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China best Air Compressor Portable Electric Silent Piston High-Pressure Oil Free Dental Air Compressor with Best Sales

Product Description

Product Description
Features
1. Complete variety and series:
The 0.5 ~ 0.7MPA series designed by modern concepts to the rehabilitation air compressor is used to gather new technological achievements of micro -small air compressors domestic and abroad.

2. Technical agglomeration, comprehensive performance of machinery:

The optimized design of the air valve can effectively reduce exhaust resistance and exhaust temperature, and increase the exhaust volume. Design a reasonable aluminum cylinder head, high heat dissipation CHINAMFG to achieve rapid heat dissipation, effectively reduce exhaust temperature, and reduce energy consumption. Use intake dumplings or exhaust load unloading devices to effectively reduce energy consumption.
Oil strikes are used to strike oil to form splashing oil fog, lubricating bearing tiles and bearing, and reliable operation.
3.Close to the actual needs of users:The complete series of products, the exhaust volume has been from small to large, which meets the needs of air mechanical and gas such as air -drifting machines such as pneumatic rock drills. There are diverse structures, suitable for different users. Low -quality, low investment costs.

Product specifications series parameters

Model HV-4.0/5 HS-4.5/6 HS-4.5/6C

Item

Engine displacement m/min 4 4.5 4.5
Discharge pressure Mpa 0.5 0.6 0.6
Crankshaft speedr/min 970 980 980
Cylinders×cylinder diameter 
z×mm
4×120 4×120 4×120
Piston stroke mm 100 112 112
Volume of gas storage tank L 230 200 230
Supporting motivation L32diesel engine or
18.5kW,2pole motor
25kW,
6pole motor
QC490G
35kW
diesel engine
Pressure control mode Inlet Close
 
Inlet Close
 
Inlet Close
 
Lubricating mode splashing Oil pump forced pressure
And oil strike splash
Elastic sleeve pin coupling directly connected
Cooling mode Air cooling Air cooling Air cooling
Driving mode Clutch, triangular belt Elastic sleeve pin coupling directly connected Clutch, reducer Elastic sleeve pin coupling
Dimension(mm) 1900×1070×1260 1460×924×1210 2030×945×1560
Total weight(kg)
diesel engine
580 630
Total weight(kg)
eclectic engine
540 550

 

Model 2V-4.0/5C 2V-4.0/5P 2V-4.0/5

Item

Engine displacement m/min 4 4 4
Discharge pressure Mpa 0.5 0.5 0.5
Crankshaft speedr/min 980 980 980
Cylinders×cylinder diameter 
z×mm
4×125 4×125 4×125
Piston stroke mm 100 100 100
Volume of gas storage tank L 230 230 230
Supporting motivation QC490G
35kW
Four-cylinder diesel engine
HS400
27kW Single-cylinder diesel engine
22kW,
6pole motor
Pressure control mode Inlet Close Inlet Close Inlet Close
Lubricating mode splashing splashing splashing
Cooling mode Air cooling Air cooling Air cooling
Driving mode Clutch, reducer Elastic sleeve pin coupling Clutch, triangular belt Elastic sleeve pin coupling directly connected
Dimension(mm) 2120×895×1560 2100×945×1285 1900×930×1235
Total weight(kg)
diesel engine
680 492 680
Total weight(kg)
eclectic engine
    580

 

 

 

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After-sales Service: Online
Lubrication Style: Oil-free
Cooling System: Air Cooling
Customization:
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air compressor

What are the differences between stationary and portable air compressors?

Stationary and portable air compressors are two common types of air compressors with distinct features and applications. Here are the key differences between them:

1. Mobility:

The primary difference between stationary and portable air compressors is their mobility. Stationary air compressors are designed to be permanently installed in a fixed location, such as a workshop or a factory. They are typically larger, heavier, and not easily movable. On the other hand, portable air compressors are smaller, lighter, and equipped with handles or wheels for easy transportation. They can be moved from one location to another, making them suitable for jobsites, construction sites, and other mobile applications.

2. Power Source:

Another difference lies in the power source used by stationary and portable air compressors. Stationary compressors are usually powered by electricity, as they are designed for continuous operation in a fixed location with access to power outlets. They are connected to the electrical grid or have dedicated wiring. In contrast, portable compressors are available in various power options, including electric, gasoline, and diesel engines. This versatility allows them to operate in remote areas or sites without readily available electricity.

3. Tank Capacity:

Tank capacity is also a distinguishing factor between stationary and portable air compressors. Stationary compressors often have larger storage tanks to store compressed air for extended periods. The larger tanks enable them to deliver a continuous and steady supply of compressed air for longer durations without the need for frequent cycling. Portable compressors, due to their compact size and portability, generally have smaller tank capacities, which may be sufficient for intermittent or smaller-scale applications.

4. Performance and Output:

The performance and output capabilities of stationary and portable air compressors can vary. Stationary compressors are typically designed for high-volume applications that require a consistent and continuous supply of compressed air. They often have higher horsepower ratings, larger motor sizes, and higher air delivery capacities. Portable compressors, while generally offering lower horsepower and air delivery compared to their stationary counterparts, are still capable of delivering sufficient air for a range of applications, including pneumatic tools, inflation tasks, and light-duty air-powered equipment.

5. Noise Level:

Noise level is an important consideration when comparing stationary and portable air compressors. Stationary compressors, being larger and built for industrial or commercial settings, are often equipped with noise-reducing features such as sound insulation and vibration dampening. They are designed to operate at lower noise levels, which is crucial for maintaining a comfortable working environment. Portable compressors, while efforts are made to reduce noise, may produce higher noise levels due to their compact size and portability.

6. Price and Cost:

Stationary and portable air compressors also differ in terms of price and cost. Stationary compressors are generally more expensive due to their larger size, higher power output, and industrial-grade construction. They often require professional installation and may involve additional costs such as electrical wiring and system setup. Portable compressors, being smaller and more versatile, tend to have a lower upfront cost. They are suitable for individual users, contractors, and small businesses with budget constraints or flexible air supply needs.

When selecting between stationary and portable air compressors, it is essential to consider the specific requirements of the intended application, such as mobility, power source availability, air demands, and noise considerations. Understanding these differences will help in choosing the appropriate type of air compressor for the intended use.

air compressor

Can air compressors be integrated into automated systems?

Yes, air compressors can be integrated into automated systems, providing a reliable and versatile source of compressed air for various applications. Here’s a detailed explanation of how air compressors can be integrated into automated systems:

Pneumatic Automation:

Air compressors are commonly used in pneumatic automation systems, where compressed air is utilized to power and control automated machinery and equipment. Pneumatic systems rely on the controlled release of compressed air to generate linear or rotational motion, actuating valves, cylinders, and other pneumatic components. By integrating an air compressor into the system, a continuous supply of compressed air is available to power the automation process.

Control and Regulation:

In automated systems, air compressors are often connected to a control and regulation system to manage the compressed air supply. This system includes components such as pressure regulators, valves, and sensors to monitor and adjust the air pressure, flow, and distribution. The control system ensures that the air compressor operates within the desired parameters and provides the appropriate amount of compressed air to different parts of the automated system as needed.

Sequential Operations:

Integration of air compressors into automated systems enables sequential operations to be carried out efficiently. Compressed air can be used to control the timing and sequencing of different pneumatic components, ensuring that the automated system performs tasks in the desired order and with precise timing. This is particularly useful in manufacturing and assembly processes where precise coordination of pneumatic actuators is required.

Energy Efficiency:

Air compressors can contribute to energy-efficient automation systems. By incorporating energy-saving features such as Variable Speed Drive (VSD) technology, air compressors can adjust their power output according to the demand, reducing energy consumption during periods of low activity. Additionally, efficient control and regulation systems help optimize the use of compressed air, minimizing waste and improving overall energy efficiency.

Monitoring and Diagnostics:

Integration of air compressors into automated systems often includes monitoring and diagnostic capabilities. Sensors and monitoring devices can be installed to collect data on parameters such as air pressure, temperature, and system performance. This information can be used for real-time monitoring, preventive maintenance, and troubleshooting, ensuring the reliable operation of the automated system.

When integrating air compressors into automated systems, it is crucial to consider factors such as the specific requirements of the automation process, the desired air pressure and volume, and the compatibility of the compressor with the control and regulation system. Consulting with experts in automation and compressed air systems can help in designing an efficient and reliable integration.

In summary, air compressors can be seamlessly integrated into automated systems, providing the necessary compressed air to power and control pneumatic components, enabling sequential operations, and contributing to energy-efficient automation processes.

air compressor

How is air pressure measured in air compressors?

Air pressure in air compressors is typically measured using one of two common units: pounds per square inch (PSI) or bar. Here’s a brief explanation of how air pressure is measured in air compressors:

1. Pounds per Square Inch (PSI): PSI is the most widely used unit of pressure measurement in air compressors, especially in North America. It represents the force exerted by one pound of force over an area of one square inch. Air pressure gauges on air compressors often display pressure readings in PSI, allowing users to monitor and adjust the pressure accordingly.

2. Bar: Bar is another unit of pressure commonly used in air compressors, particularly in Europe and many other parts of the world. It is a metric unit of pressure equal to 100,000 pascals (Pa). Air compressors may have pressure gauges that display readings in bar, providing an alternative measurement option for users in those regions.

To measure air pressure in an air compressor, a pressure gauge is typically installed on the compressor’s outlet or receiver tank. The gauge is designed to measure the force exerted by the compressed air and display the reading in the specified unit, such as PSI or bar.

It’s important to note that the air pressure indicated on the gauge represents the pressure at a specific point in the air compressor system, typically at the outlet or tank. The actual pressure experienced at the point of use may vary due to factors such as pressure drop in the air lines or restrictions caused by fittings and tools.

When using an air compressor, it is essential to set the pressure to the appropriate level required for the specific application. Different tools and equipment have different pressure requirements, and exceeding the recommended pressure can lead to damage or unsafe operation. Most air compressors allow users to adjust the pressure output using a pressure regulator or similar control mechanism.

Regular monitoring of the air pressure in an air compressor is crucial to ensure optimal performance, efficiency, and safe operation. By understanding the units of measurement and using pressure gauges appropriately, users can maintain the desired air pressure levels in their air compressor systems.

China best Air Compressor Portable Electric Silent Piston High-Pressure Oil Free Dental Air Compressor   with Best SalesChina best Air Compressor Portable Electric Silent Piston High-Pressure Oil Free Dental Air Compressor   with Best Sales
editor by CX 2024-05-14

China factory CHINAMFG Compressor, Piston Air Compressor, Piston CHINAMFG Compressor Caj4452y with high quality

Product Description

 

 

  REFRIGERATION CAPACITY AT 50 Hz Rated @54.5 P/130 F Cond.Temp(Watts)                                                                        50Hz cooling capacity, tested at 54.5°C/130°F condensing temperature                                            Evaporating Temperature  VOLTAGE 
Compressor Models Refrigerant
  Displacement (cm3)
  Oil charge(cm3)
  (D Expansion Device  
Cooling 
-10°C          +14°F -5°C        +23 °F 0°C           + 32°F +7.2°C +45 °F +10°C    +50 °F +15°C    +59 °F
AJ 5510F 22 18.6 887 C F 920 1300 1730 2443 2760 3399 208-220V/1/50Hz
AJ 5512E 22 21.8 887 C F 1250 1670 2130 2904 3250 3898 208-220V /1 / 50Hz
AJ 5513E 22 24.2 887 C F 1460 1910 2385 3203 3580 4263 208-220V /1/ 50Hz
AJ 5515E 22 26 887 C F 1680 2170 2720 3632 4571 4770 208-220V /1/ 50Hz
TAJ 5515E 22 26 887 C,V F 1680 2170 2720 3632 4571 4770 400V/3/ 50Hz
AJ 5518E 22 32.7 887 C F 2210 2760 3435 4572 5050 6007 208-220V /1/ 50Hz
AJ 5519E 22 34.5 887 C F 2320 2880 3590 4785 5300 6327 208-220V /1/ 50Hz
TAJ 5519E 22 34.5 887 C,V F 2320 2880 3590 4785 5300 6327 400V/3/ 50Hz
                         
FH 5522F 22 40.8 1330 C F 2298 3059 3955 5483 6153   208-220V /1/ 50Hz
TFH5522F 22 40.8 1330 C,V F 2298 3059 3955 5483 6153   400V/3/ 50Hz
FH 5524F 22 43.9 1330 C F 2484 3309 4279 5929 6652   208-220V /1/ 50Hz
TFH 5524F 22 43.9 1330 C,V F 2484 3309 4279 5929 6652   400V/3/ 50Hz
FH 5528F 22 49.0 1330 C F 2914 3852 4950 6811 7625   208-220V /1/ 50Hz
TFH5528F 22 49.0 1330 C,V F 2914 3852 4950 3811 7625   400V/3/ 50Hz
FH 5532F 22 53.1 1625 C F 3303 4327 5540 7619 8534   208-220V /1/ 50Hz
TFH 5532F 22 53.1 1625 C,V F 3303 4327 5540 7619 8534   400V/3/ 50Hz
FH 5538F 22 67.5 1625 C F 4146 5384 6848 9353 1571   208-220V /1/ 50Hz
TFH5538F 22 57.5 1625 C,V F 4146 5384 6848 9353 1571   400V/3/ 50Hz
FH 5542F 22 74.2 1625 C F 4343 5645 7215 9951 11166   208-220V /1/ 50Hz
TFH5542F 22 74.2 1625 C,V F 4343 5645 7215 9951 11166   400V/3/ 50Hz
                         
TAG5546E 22 90.2 1960 C,V F 4368 5934 7839 11253 12815 15961 400V/3/ 50Hz
TAG 5553E 22 101 1960 C,V F 5306 7571 9105 12922 14713 18406 400V/3/ 50Hz
TAG 5561E 22 113 1960 C,V F 6133 8164 1571 14870 16802 20658 400V/3/ 50Hz
TAG5568E 22 124 1960 C,V F 6967 9180 11862 16676 18887 23359 400V/3/ 50Hz
TAG5573E 22 135 1960 C,V F 7501 9804 12632 17816 25718 25204 400V/3/ 50Hz

   

COMPRESSOR MODEL R134A REFRIGERATION CAPACITY AT 50 Hz Rated @54.5 P/130 F Cond.Temp(Watts)                                                                        50Hz cooling capacity, tested at 54.5°C/130°F condensing temperature                                            Evaporating Temperature  VOLTAGE
Nominal Power(H.P)  
Refrigerant  
Displacement (cm3)  
Oil charge(cm3)  
Expansion device Cooling
-25°C          -13°F -15°C       -5°F -10°C         +14°F -5°C        +23°F -0°C    +32°F +7.2°C      -+4°F +15°C    +59°F
AEZ 3425Y 1/5 134a 7.55 450 C F 116 185 260 350 455 635 866 208-220V/ 1/50Hz
AEZ4425Y 1/5 134a 7.55 450 C, V F 116 185 260 350 455 635 866 220-240V/ 1/50Hz
AEZ 3430Y 1/4 134a 8.85 450 C F 195 245 328 432 558 777 1065 220-240V/1/50Hz
AEZ4430Y 1/4 1 34a 8.85 450 C, V F 195 245 328 432 558 777 1065 208-220V/ 1/50Hz
AE 3440Y 1/3 134a 12.05 450 C F 236 310 421 561 731 1026 1413 220-240V/ 1/50Hz
CAE 3440Y 1/3 134a 12.5 450 C, V F 236 310 421 561 731 1026 1413 208-220V/1/50Hz
CAE 4448Y 1/3 1 34a 14.15 450 C, V F 344 403 530 693 892 1242 1705 208-220V/ 1/50Hz
CAE 4456Y 7/16 134a 16 450 C, V F 381 458 604 787 1009 1396 1904 208-220V/ 1/50Hz
CAJ 4452Y 3/7 134a 15.2 887 C, V F 226 370 528 724 957 1358 1879 208-220V/1/50Hz
CAJ 4461Y       TAJ 4461 Y 1/2 134a 18.3 887 C, V F 370 475 642 856 1115 1569 2168 220-240V/1/50Hz 400V/3/50Hz
CAJ 4476Y 5/8 134a 21.75 887 C, V F 352 538 756 1030 1358 1926 2668 220-240V/ 1/50Hz
CAJ 4492Y       TAJ 4492Y 3/4 134a 25.95 887 C, V F 255 584 871 1215 1617 2295 3164 220-240V/ 1/50Hz 400V/3/50Hz
CAJ 4511Y       TAJ 4511 Y 1 1 34a 32.7 887 C, V F 569 878 1227 1654 2160 3026 4148 220-240V/ 1 /50Hz 400V/3/50Hz
CAH 4518Y      TFG 4518Y 1-1/2 134a 53.2 1330 C, V F 208 1036 1650 2371 3200 4583 6333 220-240V/ 1/50Hz 400V/3/50Hz
CAH 4525Y       TFG 4525Y 2 134a 74.25 1330 C, V F 1155 1667 2343 3201 4239 6053 8442 220-240V/1/50Hz 400V/3/50Hz
TAG 4528Y 2-1/2 134a 90.2 1960 C, V F 637 1368 2166 3208 4492 6766 9799 400V/3/50Hz
TAG 4534Y 3 134a 100.7 1960 C, V F 1177 1946 2871 4061 5514 8071 11460 400V/3/50Hz
TAG 4537Y 3-1/4 134a 112.5 1960 C, V F 1490 2281 3308 4634 6258 9123 12926 400V/3/50Hz
TAG 4543Y 3-1/2 134a 124.4 1960 C, V F 1836 2400 3442 4848 6620 9812 14124 400V/3/50Hz
TAGD 4556Y 5 134a 180.4 3920 C, V F 1274 2735 4333 6415 6983 13533 19597 400V/3/50Hz
TAGD 4574Y 6-1/2 134a 225 3920 C, V F 2980 4562 6616 9267 12517 18246 25852 400V/3/50Hz

COMPRESSOR MODEL   REFRIGERATION CAPACITY AT 50 Hz Rated @54.5 P/130 F Cond.Temp(Watts)                                                                        50Hz cooling capacity, tested at 54.5°C/130°F condensing temperature                                            Evaporating Temperature  VOLTAGE
Nominal Power(H.P)  
Refrigerant  
Displacement (cm3)  
Oil charge(cm3)  
Expansion device Cooling
-10°C          -13°F -15°C       +5°F -10°C         +14°F -0°C        +32°F +7.2°C    +45°F +15°C      +59°F
AE 3440A 1/3 12 12.05 450 C,V F 287 373 488 765 1571 1372 208-220V/1/50HZ
CAE 4440A 1/3 12 12.05 450 C,V F 287 373 488 765 1571 1372 208V/1/50Hz
CAE4448A 3/7 12 14.00 450 C,V F 337 443 567 894 1198 1590 208V/1/50HZ
CAE4456A 7/16 12 16.00 450 C,V F 363 496 638 1005 1339 1766 208V/1/50HZ
CAJ4452A 3/7 12 15.20 887 C,V F 175 435 595 970 1283 1650 208-220V/1/50Hz
CAJ4461A TAJ 4461A 1/2 12 18.20 887 C,V F 240 540 725 1165 1508 1905 208-220V/1/50Hz 400V/3/50HZ
CAJ4492A TAJ4492A 3/4 12 25.95 887 C,V F 385 810 1080 1740 2295 3000 208-220V/1/50HZ 400V/3/50HZ
CAJ4511A TAJ 4511A 1 12 32.70 887 C,V F 595 1140 1495 2320 3032 4000 208-220V/1/50Hz 400V/3/50Hz
CAH4518A TAH4518A 1-1/2 12 53.20 1330 C,V F 1055 1520 1990 3300 4527 6090 208-220V/1/50HZ 400V/3/50HZ
CAH4525A 2 12 74.25 1320 C,V F 1607 2120 2760 4540 6216 8420 400V/3/50HZ
R22 Rerigerant
AE Z4425E 1/5 22 4.50 450 C,V F 138 192 256 413 553 728 220-240V/1/50HZ
AEZ4430E 1/4 22 5.70 450 C,V F 192 255 336 538 718 945 208-220V/1/50HZ
AEZ4440E 1/3 22 7.55 450 C F 308 362 464 733 980 1298 208-220V/1/50Hz
AE Z4440E 1/3 22 7.55 450 C,V F 308 362 464 733 980 1298 208-220V/1/50HZ
AEZ9440E 1/3 22 7.55 450 C,V F 222 362 464 733 975 1302 220-240V/1/50HZ
AE3450E 3/7 22 9.40 450 C F 355 426 554 896 1212 1623 220-240V/1/50HZ
CAE4450E 3/7 22 9.40 450 C,V F 355 426 554 896 1212 1623 208-220V/1/50HZ
CAE9450T 3/7 22 9.40 450 C,V F 256 426 554 896 1212 1623 208-220V/1/50HZ
CAE9460T 1/2 22 11.30 450 C,V F 324 553 715 1134 1514 2000 208-220V/1/50HZ
CAJ 9480T TAJ9480T 5/8 22 15.20 887 C,V F 461 786 1011 1586 2103 2761 208-220V/1/50HZ 400V/3/50HZ
CAJ9510T TAJ9510T 1 22 18.30 887 C,V F 545 956 1229 1909 2510 3266 208-220V/1/50Hz 400V/3/50Hz
CAJ9513T TAJ9513T 1-1/8 22 24.20 887 C,V F 526 1074 1451 2411 3272 4366 208-220V/1/50Hz 400V/3/50Hz
CAJ9513T 1-1/4 22 25.95 887 C,V F 771 1233 1673 2727 3629 4743 208-220V/1/50HZ
TAJ4517T 1-1/4 22 25.95 887 C,V F 771 1230 1680 2720 3621 4740 400V/3/50HZ
CAJ4519T 1-3/4 22 34.45 887 C,V F 1382 1780 2304 3601 4738 6162 208-220V/1/50Hz
TAJ4519T 1-3/4 22 34.45 887 C,V F 1385 1780 2304 3601 4738 6162 400V/3/50HZ
FH4522F TFH4522F 2 22 39.95 1480 C,V F 1068 1598 2202 3774 5206 7042 208-220V/1/50HZ 400V/3/50HZ
FH4524F TFH4524F 2 22 43.50 1480 C,V F 1463 1841 2456 4131 5706 7759 208-220V/1/50HZ 400V/3/50HZ
FH4531F TFH4531F 2-3/4 22 56.65 1480 C,V F 1780 2620 3504 5659 7528 9854 208-220V/1/50HZ 400V/3/50HZ
TFH4538F 3 22 67.50 1625 C,V F   3100 4169 7041 96959 13400 400V/3/50Hz
TFH4540F 3-1/2 22 74.25 1480 C,V F 1299 3000 4301 7330 9863 12938 400V/3/50HZ
TAG4536T 4 22 90.20 1960 C,V F 1328 3103 4368 7839 11253 15961 400V/3/50Hz
TAG4553T 4-1/2 22 100.70 1960 C,V F 1528 3875 5306 9105 12927 18406 400V/3/50Hz
TAG4568T 5 22 112.50 1960 C,V F 2059 4465 6133 1571 14870 20658 400V/3/50HZ
TAG4568T 6 22 124.40 1960 C,V F 2493 5157 6967 11862 16676 23359 400V/3/50HZ
TAG4576T 6 22 134.80 1960 C,V F 2803 5629 7501 12632 17816 25204 400V/3/50HZ
TAGD4590T 7-1/2 22 180.40 3920 C,V F 2656 6206 8735 15678 22506 31922 400V/3/50Hz
TAGD4610T 9 22 201.40 3920 C,V F 3055 7750 10613 18211 25844 36811 400V/3/50HZ
TAGD4612T 10 22 225.00 3920 C,V F 4117 8929 12267 21186 29739 41315 400V/3/50HZ
TAGD4614T 12 22 248.80 3920 C,V F 4987 1571 13933 23724 33352 46718 400V/3/50HZ

MEDIUM/HIGH BACK PRESSURE COMPRESSORS -R404A
  Nominal Power(H.P.) REFRIGERATION CAPACITY AT 50 Hz Rated @54.5 P/130 F Cond.Temp(Watts)                                                                        50Hz cooling capacity, tested at 54.5°C/130°F condensing temperature                                            Evaporating Temperature  VOLTAGE 
  Refrigerant
  Displacement (cm3)
  Oil charge(cm3)
  (D Expansion Device  
Cooling 
-25°C          -13°F -15°C       +5 °F -10°C         + 14°F 0°C        +32 °F +7.2°C    +45 °F + 15°C    +59 °F
R404A New Refrigerant
AEZ 4425Z 1/5 R404A 4.50 450 C,V F 142 198 263 432 587 787 208-220V/l/50Hz
AEZ 3430Z 1/4 R404A 5.70 450 C F 192 258 346 550 741 1571 220-240V/1/50HZ
AEZ 4430Z 1/4 R404A 5.70 450 C,V F 192 258 346 550 741 1571 208-220V/l/50Hz
AEZ 3440Z 1/3 R404A 7.55 450 C F 287 357 462 743 1004 1342 208-220V/l/50Hz
AEZ 4440Z 1/3 R404A 7.55 450 C,V F 287 357 462 743 1004 1342 208-220V/l/50Hz
AEZ 9440Z 1/3 R404A 7.55 450 C,V F/RH 214 357 462 743 1004 1342 220-240V/l/50Hz
AE 3450Z 3/7 R404A 9.40 450 C F 345 434 567 927 1270 1729 220-240V/l/50Hz
CAE 4450Z 3/7 R404A 9.40 450 C,V F 355 434 567 927 1270 1729 208-220V/l/50Hz
CAE 9450Z 3/7 R404A 9.40 450 C,V F 250 434 567 927 1270 1729 208-220V/l/50Hz
CAE 9460Z 1/2 R404A 11.30 450 C,V F 297 546 711 1141 1545 2086 208-220V/l/50Hz
CAE 9470Z 9/16 R404A 13.30 450 C,V F 383 669 869 1392 1878 2514 208-220V/l/50Hz
CAJ 9480Z TAJ9480Z 5/8 R404A 15.20 887 C,V F 393 747 1009 1607 2172 2943 208-220V/l/50Hz 400V/3/50Hz
CAJ 9510Z TAJ9510Z 1 R404A 18.30 887 C,V F 527 970 1252 1972 2650 3563 208-220V/l/50Hz 400V/3/50Hz
CAJ9513Z TAJ9513Z 1-1/8 R404A 24.20 887 C,V F 497 1114 1501 2485 3406 4646 208-220V/l/50Hz 400V/3/50Hz
CAJ 4517Z TAJ4517Z 1-1/4 R404A 25.95 887 C,V F 1072 1364 1776 2857 3860 5173 208-220V/l/50Hz 400V/3/50Hz
CAJ 4519Z TAJ4519Z 1-3/4 R404A 34.45 887 C,V F 1260 1769 2353 3756 5030 6735 208-220V/l/50Hz 400V/3/50Hz
FH 4522Z TFH4522Z 2 R404A 39.95 1480 C,V F 966 1541 2240 3947 5475 7459 208-220V/l/50Hz 400V/3/50Hz
FH 4524Z TFH4524Z 2 R404A 43.50 1480 C,V F 1379 1835 2570 4361 5977 8101 208-220V/l/50Hz 400V/3/50Hz
FH 4531Z TFH4531Z 2-3/4 R404A 56.65 1480 C,V F 1623 2382 3300 5706 7782 15712 208-220V/l/50Hz 400V/3/50Hz
FH 4540Z TFH 4540Z 3-1/2 R404A 74.25 1480 C,V F 3078 3388 4425 7276 9814 13056 208-220V/l/50Hz 400V/3/50Hz
TAG 4546Z 4 R404A 90.20 1960 C,V F 1438 2806 4292 7956 11297 15719 400V/ 3 /50Hz
TAG4553Z 4-1/2 R404A 100.70 1960 C,V F 2774 3461 4922 8958 12805 17880 400V/ 3 /50Hz
TAG 4561Z 5 R404A 112.50 1960 C,V F 3965 4363 5895 1571 14772 25717 400V/ 3 /50Hz
TAG 4568Z 6 R404A 124.40 1960 C,V F 5146 5322 7077 11973 16636 22760 400V/ 3 /50Hz
TAG 4573Z 6 R404A 134.80 1960 C,V F 5453 5788 7710 13123 18228 24806 400V/ 3 /50Hz
TAGD4590Z 7-1/2 R404A 180.40 3920 C,V F 2876 5612 8584 15912 22594 31438 400V/ 3 /50Hz
TAGD4610Z 9 R404A 201.40 3920 C,V F 5548 6922 9844 17916 25610 35760 400V/ 3 /50Hz
TAGD4512Z 10 R404A 225.00 3920 C,V F 7930 8726 11790 20904 29544 4571 400V/ 3 /50Hz
TAGD4514Z 12 R404A 248.80 3920 C,V F 15712 10644 14154 23946 33272 45520 400V/ 3 /50Hz

Archean refrigeration has been focusing on the refrigeration industry for more than 10 years. The compressors are sold all over the world and have been well received. The company has accumulated strong experience in the compressor market, rich technical support, and a satisfactory one-stop procurement solution. You can rest assured You don’t need to worry about this series, from placing an order to receiving the goods. We provide a complete solution to serve customers well, which is our purpose of hospitality.

 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Installation Type: Movable Type
Lubrication Style: Lubricated
Cylinder Position: Vertical
Model: Caj4452y
Transport Package: Wooden/Cartoon Box
Specification: 26*26*58CM
Samples:
US$ 100/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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air compressor

Can air compressors be used for shipbuilding and maritime applications?

Air compressors are widely used in shipbuilding and maritime applications for a variety of tasks and operations. The maritime industry relies on compressed air for numerous essential functions. Here’s an overview of how air compressors are employed in shipbuilding and maritime applications:

1. Pneumatic Tools and Equipment:

Air compressors are extensively used to power pneumatic tools and equipment in shipbuilding and maritime operations. Pneumatic tools such as impact wrenches, drills, grinders, sanders, and chipping hammers require compressed air to function. The versatility and power provided by compressed air make it an ideal energy source for heavy-duty tasks, maintenance, and construction activities in shipyards and onboard vessels.

2. Painting and Surface Preparation:

Air compressors play a crucial role in painting and surface preparation during shipbuilding and maintenance. Compressed air is used to power air spray guns, sandblasting equipment, and other surface preparation tools. Compressed air provides the force necessary for efficient and uniform application of paints, coatings, and protective finishes, ensuring the durability and aesthetics of ship surfaces.

3. Pneumatic Actuation and Controls:

Air compressors are employed in pneumatic actuation and control systems onboard ships. Compressed air is used to operate pneumatic valves, actuators, and control devices that regulate the flow of fluids, control propulsion systems, and manage various shipboard processes. Pneumatic control systems offer reliability and safety advantages in maritime applications.

4. Air Start Systems:

In large marine engines, air compressors are used in air start systems. Compressed air is utilized to initiate the combustion process in the engine cylinders. The compressed air is injected into the cylinders to turn the engine’s crankshaft, enabling the ignition of fuel and starting the engine. Air start systems are commonly found in ship propulsion systems and power generation plants onboard vessels.

5. Pneumatic Conveying and Material Handling:

In shipbuilding and maritime operations, compressed air is used for pneumatic conveying and material handling. Compressed air is utilized to transport bulk materials, such as cement, sand, and grain, through pipelines or hoses. Pneumatic conveying systems enable efficient and controlled transfer of materials, facilitating construction, cargo loading, and unloading processes.

6. Air Conditioning and Ventilation:

Air compressors are involved in air conditioning and ventilation systems onboard ships. Compressed air powers air conditioning units, ventilation fans, and blowers, ensuring proper air circulation, cooling, and temperature control in various ship compartments, cabins, and machinery spaces. Compressed air-driven systems contribute to the comfort, safety, and operational efficiency of maritime environments.

These are just a few examples of how air compressors are utilized in shipbuilding and maritime applications. Compressed air’s versatility, reliability, and convenience make it an indispensable energy source for various tasks and systems in the maritime industry.

air compressor

How are air compressors used in refrigeration and HVAC systems?

Air compressors play a vital role in refrigeration and HVAC (Heating, Ventilation, and Air Conditioning) systems, providing the necessary compression of refrigerant gases and facilitating the heat transfer process. Here are the key ways in which air compressors are used in refrigeration and HVAC systems:

1. Refrigerant Compression:

In refrigeration systems, air compressors are used to compress the refrigerant gas, raising its pressure and temperature. This compressed gas then moves through the system, where it undergoes phase changes and heat exchange to enable cooling or heating. The compressor is the heart of the refrigeration cycle, as it pressurizes and circulates the refrigerant.

2. Refrigeration Cycle:

The compression of refrigerant gas by the air compressor is an essential step in the refrigeration cycle. After compression, the high-pressure, high-temperature gas flows to the condenser, where it releases heat and condenses into a liquid. The liquid refrigerant then passes through an expansion valve or device, which reduces its pressure and temperature. This low-pressure, low-temperature refrigerant then enters the evaporator, absorbing heat from the surrounding environment and evaporating back into a gas. The cycle continues as the gas returns to the compressor for re-compression.

3. HVAC Cooling and Heating:

In HVAC systems, air compressors are used to facilitate cooling and heating processes. The compressor compresses the refrigerant gas, which allows it to absorb heat from the indoor environment in the cooling mode. The compressed gas releases heat in the outdoor condenser unit and then circulates back to the compressor to repeat the cycle. In the heating mode, the compressor reverses the refrigeration cycle, absorbing heat from the outdoor air or ground source and transferring it indoors.

4. Air Conditioning:

Air compressors are an integral part of air conditioning systems, which are a subset of HVAC systems. Compressed refrigerant gases are used to cool and dehumidify the air in residential, commercial, and industrial buildings. The compressor pressurizes the refrigerant, initiating the cooling cycle that removes heat from the indoor air and releases it outside.

5. Compressor Types:

Refrigeration and HVAC systems utilize different types of air compressors. Reciprocating compressors, rotary screw compressors, and scroll compressors are commonly used in these applications. The selection of the compressor type depends on factors such as system size, capacity requirements, efficiency, and application-specific considerations.

6. Energy Efficiency:

Efficient operation of air compressors is crucial for refrigeration and HVAC systems. Energy-efficient compressors help minimize power consumption and reduce operating costs. Additionally, proper compressor sizing and system design contribute to the overall energy efficiency of refrigeration and HVAC systems.

By effectively compressing refrigerant gases and facilitating the heat transfer process, air compressors enable the cooling and heating functions in refrigeration and HVAC systems, ensuring comfortable indoor environments and efficient temperature control.

air compressor

What is the impact of tank size on air compressor performance?

The tank size of an air compressor plays a significant role in its performance and functionality. Here are the key impacts of tank size:

1. Air Storage Capacity: The primary function of the air compressor tank is to store compressed air. A larger tank size allows for greater air storage capacity. This means the compressor can build up a reserve of compressed air, which can be useful for applications that require intermittent or fluctuating air demand. Having a larger tank ensures a steady supply of compressed air during peak usage periods.

2. Run Time: The tank size affects the run time of the air compressor. A larger tank can provide longer continuous operation before the compressor motor needs to restart. This is because the compressed air in the tank can be used to meet the demand without the need for the compressor to run continuously. It reduces the frequency of motor cycling, which can improve energy efficiency and prolong the motor’s lifespan.

3. Pressure Stability: A larger tank helps maintain stable pressure during usage. When the compressor is running, it fills the tank until it reaches a specified pressure level, known as the cut-out pressure. As the air is consumed from the tank, the pressure drops to a certain level, known as the cut-in pressure, at which point the compressor restarts to refill the tank. A larger tank size results in a slower pressure drop during usage, ensuring more consistent and stable pressure for the connected tools or equipment.

4. Duty Cycle: The duty cycle refers to the amount of time an air compressor can operate within a given time period. A larger tank size can increase the duty cycle of the compressor. The compressor can run for longer periods before reaching its duty cycle limit, reducing the risk of overheating and improving overall performance.

5. Tool Compatibility: The tank size can also impact the compatibility with certain tools or equipment. Some tools, such as high-demand pneumatic tools or spray guns, require a continuous and adequate supply of compressed air. A larger tank size ensures that the compressor can meet the air demands of such tools without causing pressure drops or affecting performance.

It is important to note that while a larger tank size offers advantages in terms of air storage and performance, it also results in a larger and heavier compressor unit. Consider the intended application, available space, and portability requirements when selecting an air compressor with the appropriate tank size.

Ultimately, the optimal tank size for an air compressor depends on the specific needs of the user and the intended application. Assess the air requirements, duty cycle, and desired performance to determine the most suitable tank size for your air compressor.

China factory CHINAMFG Compressor, Piston Air Compressor, Piston CHINAMFG Compressor Caj4452y   with high qualityChina factory CHINAMFG Compressor, Piston Air Compressor, Piston CHINAMFG Compressor Caj4452y   with high quality
editor by CX 2024-05-07

China wholesaler 220V/380V 90L Industrial Mobile Garage Silent Electric Oil Free Piston Air Compressor with high quality

Product Description

220V/380V 90L Industrial Mobile Garage Silent Electric Oil Free Piston Air Compressor

Product Parameters

Name Piston Air Compressor
Applicable Industries Manufacturing Plant, Food & Beverage Factory, Printing Shops, Construction works , Food & Beverage Shops, Advertising Company
Showroom Location None
Machinery Test Report Provided
Video outgoing-inspection Provided
Marketing Type Other
Core Components Pressure vessel, Engine, Motor, Pump, Bearing
Gas Type     Air
Configuration PORTABLE
Power Source     AC POWER
Type PISTON
Lubrication Style Oil-free
Mute Yes
Voltage 220V
Dimension(L*W*H) 935*455*940mm
Weight 108kg
Application Medical dental, bus, airbrush spray paint,industrial
OEM Welcomed

  

Model name

Delivery rate at 0 bar

Max. pressure

Nominal pressure

Noise level at nomal pressure

Motor input

Voltage

Frequency

XL4V-50S-90L

440L/min

12 bar 174 CHINAMFG

8 bar 116 CHINAMFG

76 db(A)

2.2 KW

220 /380V

50 Hz

Product Display

Core Components

Company Profile

Founded in 2002, ZHangZhoug CHINAMFG Electromechanical Co., Ltd. focus on manufacturing air compressors for more than 15 years. Our company is located in Daxi Pump Industrial Area, HangZhou City, ZHangZhoug, China. having more than 15000 square meter working area.We specialize in all kinds of piston air compressors, especially having advantages in our new advanced heavy-duty oil-free air compressors.

FAQ

Q1: Are you a factory or a trading company?
A: A: Manufacturer and we focus on the development and production of air compressors for more than 20 years.

Q2: Is OEM service available?
A: Of course. We have many years experience of OEM service.

Q3: Can I get a sample to check the quality?
A: We are glad to offer you samples for test. Leave us message of the item you want or your requirements. We will reply you within 24 hours in working time.

Q4: I am buying from another supplier, but need better service, would you match or beat the price I am paying?
A: We always feel we provide the best service and competitive prices. We would be more than happy to personalize a competitive quote for you, just email us.

Q5: Is customized service available?
A: Of course, OEM & ODM both are available. Please contact us for details.

 

 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Online Support
Warranty: 1 Year
Lubrication Style: Oil-free
Cooling System: Air Cooling
Cylinder Arrangement: Parallel Arrangement
Cylinder Position: Vertical
Customization:
Available

|

air compressor

How does variable speed drive technology improve air compressor efficiency?

Variable Speed Drive (VSD) technology improves air compressor efficiency by allowing the compressor to adjust its motor speed to match the compressed air demand. This technology offers several benefits that contribute to energy savings and enhanced overall system efficiency. Here’s how VSD technology improves air compressor efficiency:

1. Matching Air Demand:

Air compressors equipped with VSD technology can vary the motor speed to precisely match the required compressed air output. Traditional fixed-speed compressors operate at a constant speed regardless of the actual demand, leading to energy wastage during periods of lower air demand. VSD compressors, on the other hand, ramp up or down the motor speed to deliver the necessary amount of compressed air, ensuring optimal energy utilization.

2. Reduced Unloaded Running Time:

Fixed-speed compressors often run unloaded during periods of low demand, where they continue to consume energy without producing compressed air. VSD technology eliminates or significantly reduces this unloaded running time by adjusting the motor speed to closely follow the air demand. As a result, VSD compressors minimize energy wastage during idle periods, leading to improved efficiency.

3. Soft Starting:

Traditional fixed-speed compressors experience high inrush currents during startup, which can strain the electrical system and cause voltage dips. VSD compressors utilize soft starting capabilities, gradually ramping up the motor speed instead of instantly reaching full speed. This soft starting feature reduces mechanical and electrical stress, ensuring a smooth and controlled startup, and minimizing energy spikes.

4. Energy Savings at Partial Load:

In many applications, compressed air demand varies throughout the day or during different production cycles. VSD compressors excel in such scenarios by operating at lower speeds during periods of lower demand. Since power consumption is proportional to motor speed, running the compressor at reduced speeds significantly reduces energy consumption compared to fixed-speed compressors that operate at a constant speed regardless of the demand.

5. Elimination of On/Off Cycling:

Fixed-speed compressors often use on/off cycling to adjust the compressed air output. This cycling can result in frequent starts and stops, which consume more energy and cause mechanical wear. VSD compressors eliminate the need for on/off cycling by continuously adjusting the motor speed to meet the demand. By operating at a consistent speed within the required range, VSD compressors minimize energy losses associated with frequent cycling.

6. Enhanced System Control:

VSD compressors offer advanced control capabilities, allowing for precise monitoring and adjustment of the compressed air system. These systems can integrate with sensors and control algorithms to maintain optimal system pressure, minimize pressure fluctuations, and prevent excessive energy consumption. The ability to fine-tune the compressor’s output based on real-time demand contributes to improved overall system efficiency.

By utilizing variable speed drive technology, air compressors can achieve significant energy savings, reduce operational costs, and enhance their environmental sustainability by minimizing energy wastage and optimizing efficiency.

air compressor

How do you choose the right air compressor for woodworking?

Choosing the right air compressor for woodworking is essential to ensure efficient and effective operation of pneumatic tools and equipment. Here are some factors to consider when selecting an air compressor for woodworking:

1. Required Air Volume (CFM):

Determine the required air volume or cubic feet per minute (CFM) for your woodworking tools and equipment. Different tools have varying CFM requirements, so it is crucial to choose an air compressor that can deliver the required CFM to power your tools effectively. Make sure to consider the highest CFM requirement among the tools you’ll be using simultaneously.

2. Tank Size:

Consider the tank size of the air compressor. A larger tank allows for more stored air, which can be beneficial when using tools that require short bursts of high air volume. It helps maintain a consistent air supply and reduces the frequency of the compressor cycling on and off. However, if you have tools with continuous high CFM demands, a larger tank may not be as critical.

3. Maximum Pressure (PSI):

Check the maximum pressure (PSI) rating of the air compressor. Woodworking tools typically operate within a specific PSI range, so ensure that the compressor can provide the required pressure. It is advisable to choose an air compressor with a higher maximum PSI rating to accommodate any future tool upgrades or changes in your woodworking needs.

4. Noise Level:

Consider the noise level of the air compressor, especially if you’ll be using it in a residential or shared workspace. Some air compressors have noise-reducing features or are designed to operate quietly, making them more suitable for woodworking environments where noise control is important.

5. Portability:

Assess the portability requirements of your woodworking projects. If you need to move the air compressor frequently or work in different locations, a portable and lightweight compressor may be preferable. However, if the compressor will remain stationary in a workshop, a larger, stationary model might be more suitable.

6. Power Source:

Determine the power source available in your woodworking workspace. Air compressors can be powered by electricity or gasoline engines. If electricity is readily available, an electric compressor may be more convenient and cost-effective. Gasoline-powered compressors offer greater flexibility for remote or outdoor woodworking projects where electricity may not be accessible.

7. Quality and Reliability:

Choose an air compressor from a reputable manufacturer known for producing reliable and high-quality equipment. Read customer reviews and consider the warranty and after-sales support offered by the manufacturer to ensure long-term satisfaction and reliability.

8. Budget:

Consider your budget and balance it with the features and specifications required for your woodworking needs. While it’s important to invest in a reliable and suitable air compressor, there are options available at various price points to accommodate different budgets.

By considering these factors and evaluating your specific woodworking requirements, you can choose an air compressor that meets the demands of your tools, provides efficient performance, and enhances your woodworking experience.

air compressor

How is air pressure measured in air compressors?

Air pressure in air compressors is typically measured using one of two common units: pounds per square inch (PSI) or bar. Here’s a brief explanation of how air pressure is measured in air compressors:

1. Pounds per Square Inch (PSI): PSI is the most widely used unit of pressure measurement in air compressors, especially in North America. It represents the force exerted by one pound of force over an area of one square inch. Air pressure gauges on air compressors often display pressure readings in PSI, allowing users to monitor and adjust the pressure accordingly.

2. Bar: Bar is another unit of pressure commonly used in air compressors, particularly in Europe and many other parts of the world. It is a metric unit of pressure equal to 100,000 pascals (Pa). Air compressors may have pressure gauges that display readings in bar, providing an alternative measurement option for users in those regions.

To measure air pressure in an air compressor, a pressure gauge is typically installed on the compressor’s outlet or receiver tank. The gauge is designed to measure the force exerted by the compressed air and display the reading in the specified unit, such as PSI or bar.

It’s important to note that the air pressure indicated on the gauge represents the pressure at a specific point in the air compressor system, typically at the outlet or tank. The actual pressure experienced at the point of use may vary due to factors such as pressure drop in the air lines or restrictions caused by fittings and tools.

When using an air compressor, it is essential to set the pressure to the appropriate level required for the specific application. Different tools and equipment have different pressure requirements, and exceeding the recommended pressure can lead to damage or unsafe operation. Most air compressors allow users to adjust the pressure output using a pressure regulator or similar control mechanism.

Regular monitoring of the air pressure in an air compressor is crucial to ensure optimal performance, efficiency, and safe operation. By understanding the units of measurement and using pressure gauges appropriately, users can maintain the desired air pressure levels in their air compressor systems.

China wholesaler 220V/380V 90L Industrial Mobile Garage Silent Electric Oil Free Piston Air Compressor   with high qualityChina wholesaler 220V/380V 90L Industrial Mobile Garage Silent Electric Oil Free Piston Air Compressor   with high quality
editor by CX 2024-04-16

China Best Sales Good-Quality Air-Cooled 250bar (25MPa) Reciprocating Piston Natural Gas Compressor for CNG Substation best air compressor

Product Description

Company Profile

 

The company’s main products include desulfurization, dehydrocarbons, separation, compression, filling, storage and transportation equipment for natural gas extraction in oil and gas fields; complete sets of wellhead gas recovery equipment; complete sets of vented natural gas recovery equipment; complete sets of coalbed methane, shale gas and biogas development and utilization equipment Equipment; CNG filling station complete equipment; LNG complete equipment; BOG compressor; large-displacement screw-piston compound compressor; membrane nitrogen and adsorption nitrogen production complete equipment; in addition, hydrogen, oxygen, nitrogen, argon, carbon monoxide gas, carbon dioxide gas, coal gas, hydrogen sulfide gas, propylene gas, ethylene gas, methyl chloride gas, trifluoropropane gas, liquefied petroleum gas and other special gases, low-temperature gases and air compressors. Among them, the W and V series non-lubricated compressors produced by introducing advanced foreign technology have reached the international advanced level.

 

Product Description

The company currently has 10 series of leading products and hundreds of specifications. Its volumetric flow rate: 0.05~200m3/min. Pressure range: low pressure type 0~1.6MPa, medium pressure
Type 1.6~8.0MPa, high pressure type 8.0~50.0MPa. Lubrication methods are divided into 3 types: oil, oil-free and completely oil-free. The structural types include Z, W, V, D, M and H types. There are 3 cooling methods: air cooling, water cooling, and mixed cooling. In addition to providing users with customized products, we can also carry out personalized design and manufacturing according to user needs.
CNG STHangZhouRD STATION COMPRESSOR
CNG standard stations are built where natural gas pipelines pass through.
Gas is taken directly from the natural gas pipeline. Natural gas undergoes desulfurization, pressure regulation, metering, and
Filtration, dehydration and other processes enter the compressor unit, and then compress, cool and purify
Then the pressure is increased to 25Mpa, and finally the high-pressure trailer is supplied to the high-pressure trailer through the air filling column.
Fill up the gas, and also fill up the car through the gas vending machine. Our company can provide overall
Solutions and turnkey projects.
Equipment composition: air inlet filter pressure regulating metering device, desulfurization tower, low-pressure dehydration device, piston compressor, sequence control panel, gas storage bottle group, adding
Gas machines, gas filling columns, CNG trailers, gas alarm devices and other equipment.
Covered area: about 2000~4000m²
Optimal transportation radius: 150km
Suitable scale: ≥40000Nm²/d
Equipment installation time: about 30 days.
 

NO. TYPE Intake pressure
MPa
CAPACITY
Nm3/h
MOTOR
KW
COOLING  WEIGHT(TONS) SIZE
mm
1 W-5.6/0.5-250 0.05 500 160 WATER COOLING 9 5000×2300×2200
2 W-3.6/1-250 0.1 435 110 WATER/MIX COOLING 6 2400×2220×2150
3 W-4.75/1-250 0.1 570 132 WATER/MIX COOLING 6 2400×2220×2150
4 W-7.5/1-250 0.1 900 270 WATER/MIX COOLING 17 8500×2260×2200
5 W-4.5/1.4-250 0.14 650 160 WATER/MIX COOLING 7 3820×2270×2150
6 W-4.7/2-250 0.2 850 185 WATER/MIX COOLING 7 3820×2270×2150
7 WF-3.6/(1.5~2.5)-250  0.15~0.25 0.15~0.25 540~750 160 AIR COOLING 14 6200×2190×2080
8 W-3.6/(1.5~3)-250 0.15~0.3 540~860 185 WATER/MIX COOLING 7 4000×2270×2150
9 V-3.2/(3-5)-250 0.3~0.5 760-1150 220 AIR COOLING 14 6300×2525×2500
10 VF-3.2/(3~5)-250 0.3~0.5 770~1150 220 WATER/MIX COOLING 14 6300×2500×2500
11 W-1.5/8-250 0.8 810 132 WATER/MIX COOLING 8 4000×2300×2000
12 VF-2/(10~16)-250 1.0~1.6 1320~2000 280 AIR COOLING 10 5600×2500×2300
13 D-5/(2~4)-250 0.2~0.4 900~1500 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
14 D-4.2/(3~6)-250 0.3~0.6 1000-1760 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
15 D-3.6/(4~7)-250 0.4~0.7 1050~1730 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
16 D-2.6/(7~12)-250 0.7~1.2 1250~2000 280 WATER/AIR/MIX COOLING 20 5000×3500×2500
17 VF-0.76/(7~13)-250 0.7~1.3 365~640 100 WATER/AIR/MIX COOLING 8 6000×2200×2230

CNG MOTHER STATION COMPRESSOR
The CNG mother station is built in a place where natural gas pipelines pass through.
Take the gas directly from the gas pipeline. Natural gas undergoes desulfurization, pressure regulation, metering, filtration,
Dehydration and other processes enter the compressor unit, and then are compressed, cooled and purified to make it
The pressure is increased to 25Mpa, and finally the high-pressure trailer is filled with air through the air filling column.
Sometimes, cars can also be refueled through gas vending machines. Our company provides turnkey projects.
Equipment composition: air inlet filter pressure regulating metering device, desulfurization tower, low pressure desulfurization tower
Water device, piston compressor, sequence control panel, gas storage bottle group, gas filling
machine, gas filling column, CNG trailer, gas alarm device and other equipment.
Covered area: about 2000~4000m²
Optimal transportation radius: 150km
Suitable scale: ≥40000Nm²/d
Equipment installation time: about 30 days.

NO. TYPE Intake pressure
MPa
CAPACITY
Nm3/h
MOTOR
KW
COOLING  WEIGHT(TONS) SIZE
mm
1   D-5/(2-4)-250 0.2~0.4 900~1500 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
2   VF-3.2/(3~5)-250 0.3~0.5 770~1150 220 AIR COOLING 14 6300×2500×2500
3   D-4.2/(3-6)-250 03~0.6 1000-1760 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
4   D-3.6/(4~7)-250 0.4~0.7 1050~1730 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
5   D-2.6/(7~12)-250 0.7~1.2 1250~2000 280 WATER/MIX COOLING 20 5000×3500×2500
6   VF-0.76/(7~13)-250 0.7~0.3 365~640 100 MIX COOLING 8 6000×2200×2230
7   D-2.8/(8-12)-250 0.8~1.2 1350-2150 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
8   V-2/(9-14)-250 0.9~1.4 1200-1800 280 WATER/AIR/MIX COOLING 12 6500×2525×2300
9   VFD-2/14-210 1.4 1800 280 AIR COOLING 15 10000×4000×3000
10   D-2.5/(12-14)-250 1.2~1.4 1950-2250 18 WATER/AIR/MIX COOLING 23 5000×3500×2500
11   VF-2/(10~16)-250 1.0~1.6 1320~2000 280 AIR COOLING 10 5600×2500×2300
12   D-2.8/(10~16)-250 1.0~1.6 1800-2850 355 WATER/AIR/MIX COOLING 23 5000×3500×2500
13   V-1.43/(16~20)-250 1.6~2.0 1460~1800 220 WATER/AIR/MIX COOLING 11 6000×2500×2250
14   D-2.4/(16-20)-250 1.6~2.0 2450-3000 355 WATER/AIR/MIX COOLING 23 5000×3500×2500
15   D-2.4/(16-23)-210 1.6~2.3 2450-3450 355 WATER/AIR/MIX COOLING 23 5000×3500×2500
16   V-1.8/(18-23)-210 1.8~2.3 2000-2590 280 WATER/AIR/MIX COOLING 12 6500×2525×2200
17   D-1.45/(20-35)-250 2.0~3.5 1830-3100 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
18   V-0.8/(19~35)-250 1.9~3.5 960~1720 160 WATER/AIR/MIX COOLING 13 6500×2525×2200
19   VF-1/(25~40)-250 2.5~4.0 1560~2700 220 AIR COOLING 13.5 4250×2525×2100
20   D-1.45/(40~60)-250 4.0~6.0 3600~5300 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
21   D-1.3/(50-70)-250 5.0~7.0 3970~5530 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
22   D-1.3/(60-70)-250 6.0~7.0 4758~5530 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
23   D-1.2/(40-80)-250 4.0~8.0 4758~5530 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
24   D-3.5/(7-10)-250 0.7~1 1680~2240 550 AIR COOLING 28 6600×4300×2500

CNG SUBSTATION COMPRESSOR
CNG substations are built in places where no natural gas pipelines pass through.
The CNG trailer transfers the gas from the mother station to the station and unloads the gas through the gas unloading column.
Gas machines refill cars.
Equipment composition: gas unloading column, sub-station compressor, sequence control panel, storage
Gas cylinder sets, gas dispensers, gas alarm devices, CNG trailers and other equipment.
Covered area: about 1000~1500m²
Way of working:
After natural balance, the direct intake air is compressed and supercharged, and the average working capacity is
More than 1000 square meters
Compressor exhaust volume changes range as trailer pressure drops:
1800-400Nm²/h

NO. TYPE Intake pressure
MPa
CAPACITY
Nm3/h
MOTOR
KW
COOLING  WEIGHT(TONS) SIZE
mm
1 VF-0.32/(30~200)-250 3~20 1500 75 AIR 5.5 5538×2134×1680
2 VFD-0.32/(30~200)-250 3~20 1500 75 AIR 9.65 5538×2438×2438
3 DFD-0.32/(30-200)-250 3~20 1500 75 AIR 8.5 4400×2610×2591
4 VFD-0.32/(20~200)-250 2~20 1500 75 AIR 9.65 5538×2438×2438
5 VF-0.26/(30-200)-250 3~20 1000 55 AIR 5.5 5538×2350×2000
6 VFD-0.26/(30-200)-250 3~20 1000 55 AIR 9.5 5538×2350×2438
7 ZFD-0.1/(30~200)-250 3~20 650 37 AIR 8.5 7000×2700×2700
8 ZFD-0.24/(30-200)-250 3~20 1400 37×2 AIR 8.5 7000×2700×2700
9 KR-1500/(20-200)-250 2~20 1500 30×2 AIR 10 5500×2500×2950
10 KR-2000/(20-200)-250 2~20 2000 37×2 AIR 10 5500×2500×2950
11 DFD-3[0.28]/(2-4)[25-200]-250 0.2~0.4

2.5~20

540-900
(STANARD STATION AND SUBSTATION)
1300
160

75

AIR 12.5 4050×3450×2100

Detailed Photos

 

After Sales Service

In addition to the high-quality performance of our products, we also attach great importance to providing customers with comprehensive services. We have an independent service operation and maintenance team, providing customers with various support and services, including technical support, debugging services, spare parts supply, renovation and upgrading, and major maintenance. We always adhere to the principle of customer-centrism, ensuring the safe and stable operation of customer equipment. Our service team is committed to providing reliable support for customers’ operations 24/7.
 

Training plan

Technical training is divided into 2 parts: company training and on-site training.
1)Company training
Before the unit is delivered, that is during the unit assembly period, users will be provided with a one-week on-site training by the company. Provide local accommodation and transportation facilities, and provide free venues, teaching materials, equipment, tools, etc. required for training. The company training content is as follows:
The working principle, structure and technical performance of the unit.
Unit assembly and adjustment, unit testing.
Operation of the unit, remote/local operation, manual/automatic operation, daily operation and management, familiar with the structure of each system of the unit.
Routine maintenance and upkeep of the unit, and precautions for operation and maintenance.
Analysis and troubleshooting of common faults, and emergency handling methods.
2) On-site training
During the installation and trial operation of the unit, on-site training will be conducted to teach the principles, structure, operation, maintenance, troubleshooting of common faults and other knowledge of the unit, so as to further become familiar with the various systems of the unit, so that the purchaser can independently and correctly operate the unit. Operation, maintenance and management.
 

Packaging & Shipping

 

  /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: 12 Month
Warranty: 12 Month
Lubrication Style: Lubricated

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air compressor

What role do air dryers play in compressed air systems?

Air dryers play a crucial role in compressed air systems by removing moisture and contaminants from the compressed air. Compressed air, when generated, contains water vapor from the ambient air, which can condense and cause issues in the system and end-use applications. Here’s an overview of the role air dryers play in compressed air systems:

1. Moisture Removal:

Air dryers are primarily responsible for removing moisture from the compressed air. Moisture in compressed air can lead to problems such as corrosion in the system, damage to pneumatic tools and equipment, and compromised product quality in manufacturing processes. Air dryers utilize various techniques, such as refrigeration, adsorption, or membrane separation, to reduce the dew point of the compressed air and eliminate moisture.

2. Contaminant Removal:

In addition to moisture, compressed air can also contain contaminants like oil, dirt, and particles. Air dryers help in removing these contaminants to ensure clean and high-quality compressed air. Depending on the type of air dryer, additional filtration mechanisms may be incorporated to enhance the removal of oil, particulates, and other impurities from the compressed air stream.

3. Protection of Equipment and Processes:

By removing moisture and contaminants, air dryers help protect the downstream equipment and processes that rely on compressed air. Moisture and contaminants can negatively impact the performance, reliability, and lifespan of pneumatic tools, machinery, and instrumentation. Air dryers ensure that the compressed air supplied to these components is clean, dry, and free from harmful substances, minimizing the risk of damage and operational issues.

4. Improved Productivity and Efficiency:

Utilizing air dryers in compressed air systems can lead to improved productivity and efficiency. Dry and clean compressed air reduces the likelihood of equipment failures, downtime, and maintenance requirements. It also prevents issues such as clogging of air lines, malfunctioning of pneumatic components, and inconsistent performance of processes. By maintaining the quality of compressed air, air dryers contribute to uninterrupted operations, optimized productivity, and cost savings.

5. Compliance with Standards and Specifications:

Many industries and applications have specific standards and specifications for the quality of compressed air. Air dryers play a vital role in meeting these requirements by ensuring that the compressed air meets the desired quality standards. This is particularly important in industries such as food and beverage, pharmaceuticals, electronics, and automotive, where clean and dry compressed air is essential for product integrity, safety, and regulatory compliance.

By incorporating air dryers into compressed air systems, users can effectively control moisture and contaminants, protect equipment and processes, enhance productivity, and meet the necessary quality standards for their specific applications.

air compressor

What is the role of air compressors in manufacturing and industrial processes?

Air compressors play a crucial role in various manufacturing and industrial processes, providing a reliable source of compressed air that powers a wide range of equipment and tools. Here are some key roles of air compressors in manufacturing and industrial settings:

1. Pneumatic Tools and Equipment:

Air compressors power a wide range of pneumatic tools and equipment used in manufacturing processes. These tools include impact wrenches, air drills, sanders, grinders, nail guns, and spray guns. Compressed air provides the necessary force and energy for these tools, enabling efficient and precise operations.

2. Automation and Control Systems:

Compressed air is used in automation and control systems within manufacturing facilities. Pneumatic actuators and valves use compressed air to control the movement of machinery and components. These systems are widely used in assembly lines, packaging operations, and material handling processes.

3. Air Blowing and Cleaning:

Compressed air is employed for blowing and cleaning applications in manufacturing and industrial processes. Air blowguns and air nozzles are used to remove debris, dust, and contaminants from surfaces, machinery, and products. Compressed air is also used for drying, cooling, and purging operations.

4. Air Separation and Gas Generation:

Air compressors are used in air separation plants to generate industrial gases such as nitrogen, oxygen, and argon. These gases are essential for various industrial processes, including metal fabrication, chemical production, and food packaging.

5. HVAC Systems:

Compressed air is utilized in heating, ventilation, and air conditioning (HVAC) systems. It powers pneumatic actuators for damper control, pneumatic controls for pressure regulation, and pneumatic valves for flow control in HVAC applications.

6. Air Compression for Storage and Transport:

Compressed air is used for storage and transport purposes in manufacturing and industrial settings. It is often used to pressurize storage tanks or containers that hold gases or liquids. Compressed air also facilitates the transfer of materials through pipelines and pneumatic conveying systems.

7. Process Instrumentation:

Compressed air is utilized in process instrumentation and control systems. It powers pneumatic instruments such as pressure gauges, flow meters, and control valves. These instruments play a critical role in monitoring and regulating various parameters in industrial processes.

8. Material Handling and Pneumatic Conveying:

In manufacturing and industrial facilities, compressed air is used for material handling and pneumatic conveying systems. It enables the movement of bulk materials such as powders, granules, and pellets through pipelines, facilitating efficient and controlled material transfer.

Overall, air compressors are vital components in manufacturing and industrial processes, providing a versatile and efficient source of power for a wide range of applications. The specific role of air compressors may vary depending on the industry, process requirements, and operational needs.

air compressor

What is the impact of tank size on air compressor performance?

The tank size of an air compressor plays a significant role in its performance and functionality. Here are the key impacts of tank size:

1. Air Storage Capacity: The primary function of the air compressor tank is to store compressed air. A larger tank size allows for greater air storage capacity. This means the compressor can build up a reserve of compressed air, which can be useful for applications that require intermittent or fluctuating air demand. Having a larger tank ensures a steady supply of compressed air during peak usage periods.

2. Run Time: The tank size affects the run time of the air compressor. A larger tank can provide longer continuous operation before the compressor motor needs to restart. This is because the compressed air in the tank can be used to meet the demand without the need for the compressor to run continuously. It reduces the frequency of motor cycling, which can improve energy efficiency and prolong the motor’s lifespan.

3. Pressure Stability: A larger tank helps maintain stable pressure during usage. When the compressor is running, it fills the tank until it reaches a specified pressure level, known as the cut-out pressure. As the air is consumed from the tank, the pressure drops to a certain level, known as the cut-in pressure, at which point the compressor restarts to refill the tank. A larger tank size results in a slower pressure drop during usage, ensuring more consistent and stable pressure for the connected tools or equipment.

4. Duty Cycle: The duty cycle refers to the amount of time an air compressor can operate within a given time period. A larger tank size can increase the duty cycle of the compressor. The compressor can run for longer periods before reaching its duty cycle limit, reducing the risk of overheating and improving overall performance.

5. Tool Compatibility: The tank size can also impact the compatibility with certain tools or equipment. Some tools, such as high-demand pneumatic tools or spray guns, require a continuous and adequate supply of compressed air. A larger tank size ensures that the compressor can meet the air demands of such tools without causing pressure drops or affecting performance.

It is important to note that while a larger tank size offers advantages in terms of air storage and performance, it also results in a larger and heavier compressor unit. Consider the intended application, available space, and portability requirements when selecting an air compressor with the appropriate tank size.

Ultimately, the optimal tank size for an air compressor depends on the specific needs of the user and the intended application. Assess the air requirements, duty cycle, and desired performance to determine the most suitable tank size for your air compressor.

China Best Sales Good-Quality Air-Cooled 250bar (25MPa) Reciprocating Piston Natural Gas Compressor for CNG Substation   best air compressorChina Best Sales Good-Quality Air-Cooled 250bar (25MPa) Reciprocating Piston Natural Gas Compressor for CNG Substation   best air compressor
editor by CX 2024-04-04

China best CHINAMFG 3HP Compressor 65mm Piston Air Compressor air compressor for sale

Product Description

Product Description

Model Voltage Power Cylinder Speed Theoretic
Displacement
Pressure Tank Tank Size
V/HZ/ph Kw HP mm*n r.p.m. L/min bar/psi L mm*mm
XYB2065B-50 220V/50HZ/1 2.2 3   ¢65*2 1100 336 8/115 100 ¢280*620

Model description
XYB2065B-50
XY: CHINAMFG company;
   2: 2pcs cylinder;
       65: cylinder diameter 65(mm);
             B: air pump type B;
               T: 8bar;
                 50: tank volume 50L;

Product advanatge
1.belt-driven 2 cylinders unit, with stable & completely closed belt guard
2.motor circuit breaker,start capacitor or three-phase versions for good starting performance
3.easy-open drain valve
4.pressure switch with cut-in/cut-off pressure 5.regulator with gauge to show pressure
6.quick connector is available
7.petrol engine air compressor with master unloader& throttle
control for better pressure control & petrol saving
8.plastic coating tank

Explosive 

 

Installation Instructions

 

Application

Similar products

Packaging & Shipping

Company Profile

Excellent Manufacturer
Established in 1988,ZHangZhoug CHINAMFG Pump Industry Co.,Ltd.Has been dedicated to the technology research,production-manufacturing,and marketing of air compressors,water pump and solar pumps.

We are ZHangZhoug key private enterprise and pioneering backbone enterprise. We have the most advanced technology in both production and management. We have a very powerful Research& Development team. We carry on strict monitoring and control to products by many kinds of advanced apparatus with third-party qualified laboratory.Welcome to inquiry!

 

Certifications

FAQ

Q: Are you manufacturer or trading factory?
A: We are factory, located in HangZhou pump industry zone.

Q: What is your MOQ?
A:

Product ready good Customized goods
Vibration pump 1pc/model 1000pcs/model
Solar pump 1pc/model 50pcs/model
Direct-driven air compressor 1pc/model 100pcs/model
Belt-driven air compressor 1pc/model mixed model for 1*40HQ
Oil free air compressor 1pc/model 100pcs/model
Air pump 1pc/model 100pcs/model

Q: May OEM?
A: OK, pls provide your logo design files when PI is comfirmed.

Q: May I buy 1pc sample first? And How long?
A: Of course, we support sampling order, especially for new customers.
     Ready goods, within 3 working days; Customized goods, 15-45 days.

Q: What is your Payment terms?
A: Sample: 100% payment in advance
    Official order: 30% deposit TT and 70% balance against BL copy

Q: What about the warranty?
A: one-year quality guarantee policy. Money refunded if any quality issues come up.

Q: Where is the landing port?
A: HangZhou port, China. 
     If ZheJiang or other port, pls inform us in advance.

Q: May I visit your factory? Where?
A: Welcome to ZHangZhoug CHINAMFG Pump Industry Co.,ltd
     Address: DaXi Pump Industrial Zone, DaXi Town, WenLing City, ZheJiang Province, China.
     Nearest railway station: 1. HangZhou station, 2. HangZhou station, 3. HangZhou station;
     Nearest air port: 1. HangZhou airport, 2. HangZhou airport;

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Online After Service
Warranty: 1 Year Warranty
Lubrication Style: Lubricated
Cooling System: Air Cooling
Cylinder Position: Vertical
Structure Type: Closed Type
Customization:
Available

|

air compressor

Can air compressors be used for cleaning and blowing dust?

Yes, air compressors can be effectively used for cleaning and blowing dust in various applications. Here’s how air compressors are utilized for these purposes:

1. Cleaning Machinery and Equipment:

Air compressors are commonly used for cleaning machinery and equipment in industries such as manufacturing, automotive, and construction. Compressed air is directed through a nozzle or blowgun attachment to blow away dust, debris, and other contaminants from surfaces, crevices, and hard-to-reach areas. The high-pressure air effectively dislodges and removes accumulated dust, helping to maintain equipment performance and cleanliness.

2. Dusting Surfaces:

Air compressors are also employed for dusting surfaces in various settings, including homes, offices, and workshops. The compressed air can be used to blow dust off furniture, shelves, electronic equipment, and other objects. It provides a quick and efficient method of dusting, especially for intricate or delicate items where traditional dusting methods may be challenging.

3. Cleaning HVAC Systems:

Air compressors are utilized for cleaning HVAC (Heating, Ventilation, and Air Conditioning) systems. The compressed air can be used to blow dust, dirt, and debris from air ducts, vents, and cooling coils. This helps improve the efficiency and air quality of HVAC systems, preventing the buildup of contaminants that can affect indoor air quality.

4. Blowing Dust in Workshops:

In workshops and garages, air compressors are often used to blow dust and debris from workbenches, power tools, and work areas. Compressed air is directed to blow away loose particles and maintain a clean and safe work environment. This is particularly useful in woodworking, metalworking, and other trades where dust and debris can accumulate during the manufacturing or fabrication processes.

5. Cleaning Electronics and Computer Equipment:

Air compressors are employed for cleaning electronics and computer equipment. The compressed air is used to blow dust and debris from keyboards, computer cases, circuit boards, and other electronic components. It helps in preventing overheating and maintaining the proper functioning of sensitive electronic devices.

6. Industrial Cleaning Applications:

Air compressors find extensive use in industrial cleaning applications. They are employed in industrial settings, such as factories and warehouses, for cleaning large surfaces, production lines, and equipment. Compressed air is directed through specialized cleaning attachments or air-operated cleaning systems to remove dust, dirt, and contaminants efficiently.

When using air compressors for cleaning and blowing dust, it is important to follow safety precautions and guidelines. The high-pressure air can cause injury if directed towards the body or sensitive equipment. It is advisable to wear appropriate personal protective equipment, such as safety glasses and gloves, and ensure that the air pressure is regulated to prevent excessive force.

Overall, air compressors provide a versatile and effective solution for cleaning and blowing dust in various applications, offering a convenient alternative to traditional cleaning methods.

air compressor

How does the horsepower of an air compressor affect its capabilities?

The horsepower of an air compressor is a crucial factor that directly impacts its capabilities and performance. Here’s a closer look at how the horsepower rating affects an air compressor:

Power Output:

The horsepower rating of an air compressor indicates its power output or the rate at which it can perform work. Generally, a higher horsepower rating translates to a greater power output, allowing the air compressor to deliver more compressed air per unit of time. This increased power output enables the compressor to operate pneumatic tools and equipment that require higher air pressure or greater airflow.

Air Pressure:

The horsepower of an air compressor is directly related to the air pressure it can generate. Air compressors with higher horsepower ratings have the capacity to produce higher air pressures. This is particularly important when operating tools or machinery that require specific air pressure levels to function optimally. For example, heavy-duty pneumatic tools like jackhammers or impact wrenches may require higher air pressure to deliver the necessary force.

Air Volume:

In addition to air pressure, the horsepower of an air compressor also affects the air volume or airflow it can provide. Higher horsepower compressors can deliver greater volumes of compressed air, measured in cubic feet per minute (CFM). This increased airflow is beneficial when using pneumatic tools that require a continuous supply of compressed air, such as paint sprayers or sandblasters.

Duty Cycle:

The horsepower rating of an air compressor can also influence its duty cycle. The duty cycle refers to the amount of time an air compressor can operate continuously before it needs to rest and cool down. Higher horsepower compressors often have larger and more robust components, allowing them to handle heavier workloads and operate for longer periods without overheating. This is particularly important in demanding applications where continuous and uninterrupted operation is required.

Size and Portability:

It’s worth noting that the horsepower rating can also affect the physical size and portability of an air compressor. Higher horsepower compressors tend to be larger and heavier due to the need for more substantial motors and components to generate the increased power output. This can impact the ease of transportation and maneuverability, especially in portable or mobile applications.

When selecting an air compressor, it is essential to consider the specific requirements of your intended applications. Factors such as desired air pressure, airflow, duty cycle, and portability should be taken into account. It’s important to choose an air compressor with a horsepower rating that aligns with the demands of the tools and equipment you plan to operate, ensuring optimal performance and efficiency.

Consulting the manufacturer’s specifications and guidelines can provide valuable information on how the horsepower rating of an air compressor corresponds to its capabilities and suitability for different tasks.

air compressor

How do you choose the right size of air compressor for your needs?

Choosing the right size of air compressor is essential to ensure optimal performance and efficiency for your specific needs. Here are some factors to consider when selecting the appropriate size:

1. Air Demand: Determine the air demand requirements of your applications. Calculate the total CFM (Cubic Feet per Minute) needed by considering the air consumption of all the pneumatic tools and equipment that will be operated simultaneously. Choose an air compressor with a CFM rating that meets or exceeds this total demand.

2. Pressure Requirements: Consider the required operating pressure for your applications. Check the PSI (Pounds per Square Inch) rating of the tools and equipment you will be using. Ensure that the air compressor you choose can deliver the necessary pressure consistently.

3. Duty Cycle: Evaluate the duty cycle of the air compressor. The duty cycle represents the percentage of time the compressor can operate within a given time period without overheating or experiencing performance issues. If you require continuous or heavy-duty operation, choose a compressor with a higher duty cycle.

4. Power Source: Determine the available power source at your location. Air compressors can be powered by electricity or gasoline engines. Ensure that the chosen compressor matches the available power supply and consider factors such as voltage, phase, and fuel requirements.

5. Portability: Assess the portability requirements of your applications. If you need to move the air compressor frequently or use it in different locations, consider a portable or wheeled compressor that is easy to transport.

6. Space and Noise Constraints: Consider the available space for installation and the noise restrictions in your working environment. Choose an air compressor that fits within the allocated space and meets any noise regulations or requirements.

7. Future Expansion: Anticipate any potential future expansions or increases in air demand. If you expect your air demand to grow over time, it may be wise to choose a slightly larger compressor to accommodate future needs and avoid the need for premature replacement.

8. Budget: Consider your budgetary constraints. Compare the prices of different air compressor models while ensuring that the chosen compressor meets your specific requirements. Keep in mind that investing in a higher-quality compressor may result in better performance, durability, and long-term cost savings.

By considering these factors and evaluating your specific needs, you can choose the right size of air compressor that will meet your air demand, pressure requirements, and operational preferences, ultimately ensuring efficient and reliable performance.

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editor by CX 2024-03-06

China Best Sales Wholesale Factory Qr3-44p Portable Electric High Pressure Small 4HP Piston Air Compressor air compressor oil

Product Description

Model Refrigerat Horsepower
(H.P)
Displacement
(cm³)
Power source Nominal Capacity W/W
COP
The Evaporating Temperature
-15ºC 11540
QR3-44 2 44 220V/3PH/60Hz
380V/3PH/50Hz
380V/3PH/60Hz
460V/3PH/60Hz
5977 2.9 1850 2580 4370 5977 8110
QR3-52 2.5 52 7146 2.9 2260 3240 54 3 2970 3960 6420 86~8 11540
QR3-74 3.5 74.2 9984 2.9 2805 4296 7276 9814 13056
QR3-90 4 90.2 113 3 2970 3960 6420 86~8 11540
QR3-74P 3.5 74.2 9984 2.9 2805 4296 7276 9814 13056
QR3-90P 4 90.2 11300 2.9 3388 4425 7956 11300 15719
QR3-112P 5 112.5 14780 2.8 4360 5890 10450 14780 25710
QR3-124P 6 124.4 16650 2.8 5320 7080 11970 16650 22760
QR3-134P 7 134.8 18230 2.8 5780 7710 13120 18230 24806
QR3-44P R22 2 44 220V/3PH/60Hz
380V/3PH/50Hz
380V/3PH/60Hz
460V/3PH/60Hz
5770 2.9 1960 2480 4300 5770 7830
QR3-52P 2.5 52 7050 2.9 2370 3180 5300 7050 9200
QR3-58P 3 58.2 7900 3 2720 3680 5950 7900 10300
QR3-62P 3 62.7 8500 3 2890 3830 6300 8500 11450
QR3-74P 3.5 74.2 9860 2.9 3000 4300 7330 9860 12900
QR3-90P 4 90.2 11250 2.9 3100 4370 7840 11250 16000
QR3-112P 5 112.5 14900 2.8 4470 6130 10600 14900 2 0571
QR3-124P 6 124.4 16640 2.8 5160 6970 11860 16640 23360
QR3-134P 7 134.8 17800 2.75 5630 7500 12630 17800 25200
Model Refrigerat Horsepower
(H.P)
Displacement
(cm³)
Power source Nominal Capacity W/W
COP
The Evaporating Temperature
-35ºC
-31F
-30ºC
-22°F
23.3ºC
9.9°F
20ºC
-4°F
-10ºC 0ºC
+14°F+32°F
QL52 R404a 2.5 52 220-240V/1PH/50Hz
208-230V/1PH/60Hz
2180 1.5 730 1310 2189 2660 4410 6100
QL62 3 62.7 2760 1.5 1040 1728 2765 2930 5421 7900
QL3-52 2.5 52 220V/3PH/60Hz
380V/3PH/50Hz
380V/3PH/60Hz
460V/3PH/60Hz
2180 1.5 730 1310 2180 2660 4410 6100
QL3-74 3.5 74.2 3135 1.5 1380 2016 3135 3796 6220 8644
QL3-112 5 112.5 4350 1.5 1743 2704 4350 5335 9038 12740
QL3-134 7 134.8 5520 1.5 2378 3540 5520 6688 11060 15430

/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Standard
Warranty: 1year
Lubrication Style: Lubricated
Samples:
US$ 300/Piece
1 Piece(Min.Order)

|

Order Sample

Customization:
Available

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Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

air compressor

What are the advantages of using an air compressor in construction?

Using an air compressor in construction offers numerous advantages that contribute to increased efficiency, productivity, and versatility. Here are some key benefits of using air compressors in construction:

  • Powering Pneumatic Tools: Air compressors are commonly used to power a wide range of pneumatic tools on construction sites. Tools such as jackhammers, nail guns, impact wrenches, drills, and sanders can be operated using compressed air. Pneumatic tools are often preferred due to their lightweight, compact design and ability to deliver high torque or impact force.
  • Efficient Operation: Air compressors provide a continuous and reliable source of power for pneumatic tools, allowing for uninterrupted operation without the need for frequent battery changes or recharging. This helps to maintain a smooth workflow and reduces downtime.
  • Portability: Many construction air compressors are designed to be portable, featuring wheels or handles for easy maneuverability on job sites. Portable air compressors can be transported to different areas of the construction site as needed, providing power wherever it is required.
  • Versatility: Air compressors are versatile tools that can be used for various applications in construction. Apart from powering pneumatic tools, they can also be utilized for tasks such as inflating tires, cleaning debris, operating air-operated pumps, and powering air horns.
  • Increased Productivity: The efficient operation and power output of air compressors enable construction workers to complete tasks more quickly and effectively. Pneumatic tools powered by air compressors often offer higher performance and faster operation compared to their electric or manual counterparts.
  • Cost Savings: Air compressors can contribute to cost savings in construction projects. Pneumatic tools powered by air compressors are generally more durable and have longer lifespans compared to electric tools. Additionally, since air compressors use compressed air as their power source, they do not require the purchase or disposal of batteries or fuel, reducing ongoing operational expenses.
  • Reduced Electrocution Risk: Construction sites can be hazardous environments, with the risk of electrocution from electrical tools or equipment. By utilizing air compressors and pneumatic tools, the reliance on electrical power is minimized, reducing the risk of electrocution accidents.

It is important to select the appropriate air compressor for construction applications based on factors such as required air pressure, volume, portability, and durability. Regular maintenance, including proper lubrication and cleaning, is crucial to ensure the optimal performance and longevity of air compressors in construction settings.

In summary, the advantages of using air compressors in construction include powering pneumatic tools, efficient operation, portability, versatility, increased productivity, cost savings, and reduced electrocution risk, making them valuable assets on construction sites.

air compressor

What is the impact of altitude on air compressor performance?

The altitude at which an air compressor operates can have a significant impact on its performance. Here are the key factors affected by altitude:

1. Decreased Air Density:

As altitude increases, the air density decreases. This means there is less oxygen available per unit volume of air. Since air compressors rely on the intake of atmospheric air for compression, the reduced air density at higher altitudes can lead to a decrease in compressor performance.

2. Reduced Airflow:

The decrease in air density at higher altitudes results in reduced airflow. This can affect the cooling capacity of the compressor, as lower airflow hampers the dissipation of heat generated during compression. Inadequate cooling can lead to increased operating temperatures and potential overheating of the compressor.

3. Decreased Power Output:

Lower air density at higher altitudes also affects the power output of the compressor. The reduced oxygen content in the air can result in incomplete combustion, leading to decreased power generation. As a result, the compressor may deliver lower airflow and pressure than its rated capacity.

4. Extended Compression Cycle:

At higher altitudes, the air compressor needs to work harder to compress the thinner air. This can lead to an extended compression cycle, as the compressor may require more time to reach the desired pressure levels. The longer compression cycle can affect the overall efficiency and productivity of the compressor.

5. Pressure Adjustments:

When operating an air compressor at higher altitudes, it may be necessary to adjust the pressure settings. As the ambient air pressure decreases with altitude, the compressor’s pressure gauge may need to be recalibrated to maintain the desired pressure output. Failing to make these adjustments can result in underinflated tires, improper tool performance, or other issues.

6. Compressor Design:

Some air compressors are specifically designed to handle higher altitudes. These models may incorporate features such as larger intake filters, more robust cooling systems, and adjusted compression ratios to compensate for the reduced air density and maintain optimal performance.

7. Maintenance Considerations:

Operating an air compressor at higher altitudes may require additional maintenance and monitoring. It is important to regularly check and clean the intake filters to ensure proper airflow. Monitoring the compressor’s operating temperature and making any necessary adjustments or repairs is also crucial to prevent overheating and maintain efficient performance.

When using an air compressor at higher altitudes, it is advisable to consult the manufacturer’s guidelines and recommendations specific to altitude operations. Following these guidelines and considering the impact of altitude on air compressor performance will help ensure safe and efficient operation.

air compressor

How is air pressure measured in air compressors?

Air pressure in air compressors is typically measured using one of two common units: pounds per square inch (PSI) or bar. Here’s a brief explanation of how air pressure is measured in air compressors:

1. Pounds per Square Inch (PSI): PSI is the most widely used unit of pressure measurement in air compressors, especially in North America. It represents the force exerted by one pound of force over an area of one square inch. Air pressure gauges on air compressors often display pressure readings in PSI, allowing users to monitor and adjust the pressure accordingly.

2. Bar: Bar is another unit of pressure commonly used in air compressors, particularly in Europe and many other parts of the world. It is a metric unit of pressure equal to 100,000 pascals (Pa). Air compressors may have pressure gauges that display readings in bar, providing an alternative measurement option for users in those regions.

To measure air pressure in an air compressor, a pressure gauge is typically installed on the compressor’s outlet or receiver tank. The gauge is designed to measure the force exerted by the compressed air and display the reading in the specified unit, such as PSI or bar.

It’s important to note that the air pressure indicated on the gauge represents the pressure at a specific point in the air compressor system, typically at the outlet or tank. The actual pressure experienced at the point of use may vary due to factors such as pressure drop in the air lines or restrictions caused by fittings and tools.

When using an air compressor, it is essential to set the pressure to the appropriate level required for the specific application. Different tools and equipment have different pressure requirements, and exceeding the recommended pressure can lead to damage or unsafe operation. Most air compressors allow users to adjust the pressure output using a pressure regulator or similar control mechanism.

Regular monitoring of the air pressure in an air compressor is crucial to ensure optimal performance, efficiency, and safe operation. By understanding the units of measurement and using pressure gauges appropriately, users can maintain the desired air pressure levels in their air compressor systems.

China Best Sales Wholesale Factory Qr3-44p Portable Electric High Pressure Small 4HP Piston Air Compressor   air compressor oilChina Best Sales Wholesale Factory Qr3-44p Portable Electric High Pressure Small 4HP Piston Air Compressor   air compressor oil
editor by CX 2024-02-07

China Custom High Pressure Air-Cooled Oxygen Hydrogen Booster Oil-Free Nitrogen CO2 Piston Compressor air compressor oil

Product Description

HangZhou CHINAMFG Gas Equipment Co.,Ltd, exporting diaphragm compressor, piston compressor, oxygen generator, gas cylinder and nitrogen generators with good quality and low price.

Piston compressor is a kind of piston reciprocating motion to make gas pressurization and gas delivery compressor mainly consists of working chamber, transmission parts, body and auxiliary parts. The working chamber is directly used to compress the gas, the piston is driven by the piston rod in the cylinder for reciprocating motion, the volume of the working chamber on both sides of the piston changes in turn, the volume decreases on 1 side of the gas due to the pressure increase through the valve discharge, the volume increases on 1 side due to the reduction of air pressure through the valve to absorb the gas.

/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: 18 Months
Warranty: 18 Months
Lubrication Style: Lubricated
Cooling System: Water Cooling
Cylinder Arrangement: Balanced Opposed Arrangement
Cylinder Position: Angular
Customization:
Available

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air compressor

How does variable speed drive technology improve air compressor efficiency?

Variable Speed Drive (VSD) technology improves air compressor efficiency by allowing the compressor to adjust its motor speed to match the compressed air demand. This technology offers several benefits that contribute to energy savings and enhanced overall system efficiency. Here’s how VSD technology improves air compressor efficiency:

1. Matching Air Demand:

Air compressors equipped with VSD technology can vary the motor speed to precisely match the required compressed air output. Traditional fixed-speed compressors operate at a constant speed regardless of the actual demand, leading to energy wastage during periods of lower air demand. VSD compressors, on the other hand, ramp up or down the motor speed to deliver the necessary amount of compressed air, ensuring optimal energy utilization.

2. Reduced Unloaded Running Time:

Fixed-speed compressors often run unloaded during periods of low demand, where they continue to consume energy without producing compressed air. VSD technology eliminates or significantly reduces this unloaded running time by adjusting the motor speed to closely follow the air demand. As a result, VSD compressors minimize energy wastage during idle periods, leading to improved efficiency.

3. Soft Starting:

Traditional fixed-speed compressors experience high inrush currents during startup, which can strain the electrical system and cause voltage dips. VSD compressors utilize soft starting capabilities, gradually ramping up the motor speed instead of instantly reaching full speed. This soft starting feature reduces mechanical and electrical stress, ensuring a smooth and controlled startup, and minimizing energy spikes.

4. Energy Savings at Partial Load:

In many applications, compressed air demand varies throughout the day or during different production cycles. VSD compressors excel in such scenarios by operating at lower speeds during periods of lower demand. Since power consumption is proportional to motor speed, running the compressor at reduced speeds significantly reduces energy consumption compared to fixed-speed compressors that operate at a constant speed regardless of the demand.

5. Elimination of On/Off Cycling:

Fixed-speed compressors often use on/off cycling to adjust the compressed air output. This cycling can result in frequent starts and stops, which consume more energy and cause mechanical wear. VSD compressors eliminate the need for on/off cycling by continuously adjusting the motor speed to meet the demand. By operating at a consistent speed within the required range, VSD compressors minimize energy losses associated with frequent cycling.

6. Enhanced System Control:

VSD compressors offer advanced control capabilities, allowing for precise monitoring and adjustment of the compressed air system. These systems can integrate with sensors and control algorithms to maintain optimal system pressure, minimize pressure fluctuations, and prevent excessive energy consumption. The ability to fine-tune the compressor’s output based on real-time demand contributes to improved overall system efficiency.

By utilizing variable speed drive technology, air compressors can achieve significant energy savings, reduce operational costs, and enhance their environmental sustainability by minimizing energy wastage and optimizing efficiency.

air compressor

How do you maintain proper air quality in compressed air systems?

Maintaining proper air quality in compressed air systems is essential to ensure the reliability and performance of pneumatic equipment and the safety of downstream processes. Here are some key steps to maintain air quality:

1. Air Filtration:

Install appropriate air filters in the compressed air system to remove contaminants such as dust, dirt, oil, and water. Filters are typically placed at various points in the system, including the compressor intake, aftercoolers, and before point-of-use applications. Regularly inspect and replace filters to ensure their effectiveness.

2. Moisture Control:

Excessive moisture in compressed air can cause corrosion, equipment malfunction, and compromised product quality. Use moisture separators or dryers to remove moisture from the compressed air. Refrigerated dryers, desiccant dryers, or membrane dryers are commonly employed to achieve the desired level of dryness.

3. Oil Removal:

If the compressed air system utilizes oil-lubricated compressors, it is essential to incorporate proper oil removal mechanisms. This can include coalescing filters or adsorption filters to remove oil aerosols and vapors from the air. Oil-free compressors eliminate the need for oil removal.

4. Regular Maintenance:

Perform routine maintenance on the compressed air system, including inspections, cleaning, and servicing of equipment. This helps identify and address any potential issues that may affect air quality, such as leaks, clogged filters, or malfunctioning dryers.

5. Air Receiver Tank Maintenance:

Regularly drain and clean the air receiver tank to remove accumulated contaminants, including water and debris. Proper maintenance of the tank helps prevent contamination from being introduced into the compressed air system.

6. Air Quality Testing:

Periodically test the quality of the compressed air using appropriate instruments and methods. This can include measuring particle concentration, oil content, dew point, and microbial contamination. Air quality testing provides valuable information about the effectiveness of the filtration and drying processes and helps ensure compliance with industry standards.

7. Education and Training:

Educate personnel working with compressed air systems about the importance of air quality and the proper procedures for maintaining it. Provide training on the use and maintenance of filtration and drying equipment, as well as awareness of potential contaminants and their impact on downstream processes.

8. Documentation and Record-Keeping:

Maintain accurate records of maintenance activities, including filter replacements, drying system performance, and air quality test results. Documentation helps track the system’s performance over time and provides a reference for troubleshooting or compliance purposes.

By implementing these practices, compressed air systems can maintain proper air quality, minimize equipment damage, and ensure the integrity of processes that rely on compressed air.

air compressor

How do oil-lubricated and oil-free air compressors differ?

Oil-lubricated and oil-free air compressors differ in terms of their lubrication systems and the presence of oil in their operation. Here are the key differences:

Oil-Lubricated Air Compressors:

1. Lubrication: Oil-lubricated air compressors use oil for lubricating the moving parts, such as pistons, cylinders, and bearings. The oil forms a protective film that reduces friction and wear, enhancing the compressor’s efficiency and lifespan.

2. Performance: Oil-lubricated compressors are known for their smooth and quiet operation. The oil lubrication helps reduce noise levels and vibration, resulting in a more comfortable working environment.

3. Maintenance: These compressors require regular oil changes and maintenance to ensure the proper functioning of the lubrication system. The oil filter may need replacement, and the oil level should be regularly checked and topped up.

4. Applications: Oil-lubricated compressors are commonly used in applications that demand high air quality and continuous operation, such as industrial settings, workshops, and manufacturing facilities.

Oil-Free Air Compressors:

1. Lubrication: Oil-free air compressors do not use oil for lubrication. Instead, they utilize alternative materials, such as specialized coatings, self-lubricating materials, or water-based lubricants, to reduce friction and wear.

2. Performance: Oil-free compressors generally have a higher airflow capacity, making them suitable for applications where a large volume of compressed air is required. However, they may produce slightly more noise and vibration compared to oil-lubricated compressors.

3. Maintenance: Oil-free compressors typically require less maintenance compared to oil-lubricated ones. They do not need regular oil changes or oil filter replacements. However, it is still important to perform routine maintenance tasks such as air filter cleaning or replacement.

4. Applications: Oil-free compressors are commonly used in applications where air quality is crucial, such as medical and dental facilities, laboratories, electronics manufacturing, and painting applications. They are also favored for portable and consumer-grade compressors.

When selecting between oil-lubricated and oil-free air compressors, consider the specific requirements of your application, including air quality, noise levels, maintenance needs, and expected usage. It’s important to follow the manufacturer’s recommendations for maintenance and lubrication to ensure the optimal performance and longevity of the air compressor.

China Custom High Pressure Air-Cooled Oxygen Hydrogen Booster Oil-Free Nitrogen CO2 Piston Compressor   air compressor oilChina Custom High Pressure Air-Cooled Oxygen Hydrogen Booster Oil-Free Nitrogen CO2 Piston Compressor   air compressor oil
editor by CX 2024-01-17

China Good quality CHINAMFG Piston Air Compressor Series with Air Tank for Spray Booth Spray Gun Direct Driven Portable/ Small/Centrifugal Air Compressor Auto Garage Equipment air compressor repair near me

Product Description

WLD Piston Air Compressor Series With Air Tank

Product Description

Model Power
(KW/Hp) 
Power Supply
(V)
 Cylinder diameter* Cylinder number(mm*z)   Exhaust pressure
(Mpa)    
                       Exhaust Volume
(m³/min)  
Tank Capacity Specifications Picture
V0.25/8 2.2KW/3Hp 220V/380V 65*2 0.8 0.25/8 70L 300*800
W0.36/8 3KW/4Hp 220V/380V 65*3 0.8 0.36/8 88L 320*930
V0.6/8 4KW/5.5Hp 380V 90*2 0.8 0.6/8 110L 350*1571
V0.67/8 5.5KW/7.5Hp 380V 90*3 0.8 0.67/8 180L 400*1050
W0.9/8 7.5KW/10Hp 380V 90*3 0.8 0.9/8 180L 400*1200
W1.0/8 7.5KW/10Hp 380V 90*3 0.8 1.0/8 230L 450*1200
V1.05/8 7.5KW/10Hp 380V 105*2 0.8 1.05/8 290L 500*1200
V1.05/12.5 7.5KW/10Hp 380V 105*2 1.25 1.05/8 290L 500*1200

 

Associated Products

Screw Air Compressor 

 

Company Profile

About us

Product Showroom
Exhibition

FAQ

Q: Are you Manufacturer or Trading Company?
We are a professional manufacturer with our own export department.
WLD was established in 2000 with an area of 18,000 square meters, specialized in manufacturing spray booths,preparation stations, mixing room,powder coating line, powder coating oven, curing oven, water curtain booth etc.

Q:Can we customize our product?
Yes,you can.Customized material and standard are acceptable. We can provide different standards according to your market and favor.

Q: How do you control your production quality?
A: We have an independent QC team. Our QC teams do sample inspection, part inspection during production and 100% final inspection before each shipment.

Q: Can I have a visit to your company before placing an order?
A: Sure, welcome to visit WEILONGDA. Our factories locates in Xihu (West Lake) Dis. District HangZhou.

Q: May I know the Lead time?
A:The lead time of our machine is 7 to 30 days.

Q: What is your payment terms?
By T/T, 30% as deposit for production, and 70% balance before delivery. We’ll show you the photos of the products and packages before you pay the balance.

Q: Can you provide the whole workshop automotive equipment?
A: Yes. we have all kinds of relevant auto body shop equipment for sale like tire changer, wheel balancer, wheel alignment etc.

Q: How long is the warranty?
A: Our warranty is 12 months, we will send free parts for replacement in warranty, supply spare parts for lifetime.

Q: What is the regular color? Can I order special color which I like?
A: The regular color is Blue, Red,Orange.Grey

 

  /* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

After-sales Service: Online and Others
Warranty: 12 Months
Certificate: CE
Payment: T/T
Power: 2.2kw/3HP and Others
Power Supply: 220V/380V
Customization:
Available

|

air compressor

How are air compressors employed in the petrochemical industry?

Air compressors play a vital role in the petrochemical industry, where they are employed for various applications that require compressed air. The petrochemical industry encompasses the production of chemicals and products derived from petroleum and natural gas. Here’s an overview of how air compressors are utilized in the petrochemical industry:

1. Instrumentation and Control Systems:

Air compressors are used to power pneumatic instrumentation and control systems in petrochemical plants. These systems rely on compressed air to operate control valves, actuators, and other pneumatic devices that regulate processes such as flow control, pressure control, and temperature control. Compressed air provides a reliable and clean source of energy for these critical control mechanisms.

2. Pneumatic Tools and Equipment:

Petrochemical plants often utilize pneumatic tools and equipment for various tasks such as maintenance, repair, and construction activities. Air compressors supply the necessary compressed air to power these tools, including pneumatic drills, impact wrenches, grinders, sanders, and painting equipment. The versatility and convenience of compressed air make it an ideal energy source for a wide range of pneumatic tools used in the industry.

3. Process Air and Gas Supply:

Petrochemical processes often require a supply of compressed air and gases for specific applications. Air compressors are employed to generate compressed air for processes such as oxidation, combustion, and aeration. They may also be used to compress gases like nitrogen, hydrogen, and oxygen, which are utilized in various petrochemical reactions and treatment processes.

4. Cooling and Ventilation:

Petrochemical plants require adequate cooling and ventilation systems to maintain optimal operating conditions and ensure the safety of personnel. Air compressors are used to power cooling fans, blowers, and air circulation systems that help maintain the desired temperature, remove heat generated by equipment, and provide ventilation in critical areas.

5. Nitrogen Generation:

Nitrogen is widely used in the petrochemical industry for applications such as blanketing, purging, and inerting. Air compressors are utilized in nitrogen generation systems, where they compress atmospheric air, which is then passed through a nitrogen separation process to produce high-purity nitrogen gas. This nitrogen is used for various purposes, including preventing the formation of explosive mixtures, protecting sensitive equipment, and maintaining the integrity of stored products.

6. Instrument Air:

Instrument air is essential for operating pneumatic instruments, analyzers, and control devices throughout the petrochemical plant. Air compressors supply compressed air that is treated and conditioned to meet the stringent requirements of instrument air quality standards. Instrument air is used for tasks such as pneumatic conveying, pneumatic actuators, and calibration of instruments.

By employing air compressors in the petrochemical industry, operators can ensure reliable and efficient operation of pneumatic systems, power various tools and equipment, support critical processes, and maintain safe and controlled environments.

air compressor

Can air compressors be integrated into automated systems?

Yes, air compressors can be integrated into automated systems, providing a reliable and versatile source of compressed air for various applications. Here’s a detailed explanation of how air compressors can be integrated into automated systems:

Pneumatic Automation:

Air compressors are commonly used in pneumatic automation systems, where compressed air is utilized to power and control automated machinery and equipment. Pneumatic systems rely on the controlled release of compressed air to generate linear or rotational motion, actuating valves, cylinders, and other pneumatic components. By integrating an air compressor into the system, a continuous supply of compressed air is available to power the automation process.

Control and Regulation:

In automated systems, air compressors are often connected to a control and regulation system to manage the compressed air supply. This system includes components such as pressure regulators, valves, and sensors to monitor and adjust the air pressure, flow, and distribution. The control system ensures that the air compressor operates within the desired parameters and provides the appropriate amount of compressed air to different parts of the automated system as needed.

Sequential Operations:

Integration of air compressors into automated systems enables sequential operations to be carried out efficiently. Compressed air can be used to control the timing and sequencing of different pneumatic components, ensuring that the automated system performs tasks in the desired order and with precise timing. This is particularly useful in manufacturing and assembly processes where precise coordination of pneumatic actuators is required.

Energy Efficiency:

Air compressors can contribute to energy-efficient automation systems. By incorporating energy-saving features such as Variable Speed Drive (VSD) technology, air compressors can adjust their power output according to the demand, reducing energy consumption during periods of low activity. Additionally, efficient control and regulation systems help optimize the use of compressed air, minimizing waste and improving overall energy efficiency.

Monitoring and Diagnostics:

Integration of air compressors into automated systems often includes monitoring and diagnostic capabilities. Sensors and monitoring devices can be installed to collect data on parameters such as air pressure, temperature, and system performance. This information can be used for real-time monitoring, preventive maintenance, and troubleshooting, ensuring the reliable operation of the automated system.

When integrating air compressors into automated systems, it is crucial to consider factors such as the specific requirements of the automation process, the desired air pressure and volume, and the compatibility of the compressor with the control and regulation system. Consulting with experts in automation and compressed air systems can help in designing an efficient and reliable integration.

In summary, air compressors can be seamlessly integrated into automated systems, providing the necessary compressed air to power and control pneumatic components, enabling sequential operations, and contributing to energy-efficient automation processes.

air compressor

How is air pressure measured in air compressors?

Air pressure in air compressors is typically measured using one of two common units: pounds per square inch (PSI) or bar. Here’s a brief explanation of how air pressure is measured in air compressors:

1. Pounds per Square Inch (PSI): PSI is the most widely used unit of pressure measurement in air compressors, especially in North America. It represents the force exerted by one pound of force over an area of one square inch. Air pressure gauges on air compressors often display pressure readings in PSI, allowing users to monitor and adjust the pressure accordingly.

2. Bar: Bar is another unit of pressure commonly used in air compressors, particularly in Europe and many other parts of the world. It is a metric unit of pressure equal to 100,000 pascals (Pa). Air compressors may have pressure gauges that display readings in bar, providing an alternative measurement option for users in those regions.

To measure air pressure in an air compressor, a pressure gauge is typically installed on the compressor’s outlet or receiver tank. The gauge is designed to measure the force exerted by the compressed air and display the reading in the specified unit, such as PSI or bar.

It’s important to note that the air pressure indicated on the gauge represents the pressure at a specific point in the air compressor system, typically at the outlet or tank. The actual pressure experienced at the point of use may vary due to factors such as pressure drop in the air lines or restrictions caused by fittings and tools.

When using an air compressor, it is essential to set the pressure to the appropriate level required for the specific application. Different tools and equipment have different pressure requirements, and exceeding the recommended pressure can lead to damage or unsafe operation. Most air compressors allow users to adjust the pressure output using a pressure regulator or similar control mechanism.

Regular monitoring of the air pressure in an air compressor is crucial to ensure optimal performance, efficiency, and safe operation. By understanding the units of measurement and using pressure gauges appropriately, users can maintain the desired air pressure levels in their air compressor systems.

China Good quality CHINAMFG Piston Air Compressor Series with Air Tank for Spray Booth Spray Gun Direct Driven Portable/ Small/Centrifugal Air Compressor Auto Garage Equipment   air compressor repair near meChina Good quality CHINAMFG Piston Air Compressor Series with Air Tank for Spray Booth Spray Gun Direct Driven Portable/ Small/Centrifugal Air Compressor Auto Garage Equipment   air compressor repair near me
editor by CX 2024-01-10

China Custom 6cfm Oilless Piston Pump Portable Engine Dental Air Compressor with Hot selling

Product Description

6CFM Oilless Piston Pump Portable Engine dental air compressor

Advantages:
Oil-less Vacuum Pumps / Air Compressors

PRANSCH oil-less rocking piston pump and air compressor combines the best characteristics of traditional piston pumps(air compressor) and diaphragm pumps into small units with excellent features.

  1. Light weight and very portable
  2. Durable and near ZERO maintenance
  3. Thermal protection (130 deg C)
  4. Power cord with plug, 1m length
  5. Shock mount
  6. Silencer – muffler
  7. Stainless steel vacuum and pressure gauge, both with oil damping
  8. Two stainless steel needle valves each with lock nut.
  9. All nickel plated fittings
  10. Power supply 230V, 50/60 Hz

This series is ideal for use in applications where oil-mist is undesirable. For examples, pressure/vacuum filtration, air sampling, water aeration, flame photometer, etc.

Specification:

Model Frequency Flow Pressure Power Speed Current Voltage Heat Sound Weight Hole Installation Dimensions
Hz L/min Kpa Kw Min-1 A V 0 C db(A) Kg MM MM
PM200C 50 50 200 0.12 1380 0.45  210/235 5-40 48 1.8  M5 L100xW74
60 58 200 0.13 1450 0.90  110/125 5-40 48 1.8  M5
PM300C 50 75 300 0.15 1380 0.76  210/235 5-40 45 3.2  M6 L118xW70
60 90 300 0.16 1450 1.52  110/125 5-40 45 3.2  M6
PM550C 50 105 600 0.32 1380 1.50  210/235 5-40 56 6.0  M6 L148xW83
60 115 600 0.35 1450 3.00  110/125 5-40 56 6.0  M6
PM1200C 50 120 300 0.45 1380 1.70  210/235 5-40 58 7.6  M6 L203xW86
60 145 300 0.49 1450 3.50  110/125 5-40 58 7.6  M6
PM1400C 50 160 700 0.45 1380 1.70  210/235 5-40 58 8.5  M6 L203xW86
60 180 700 0.49 1450 3.50  110/125 5-40 58 8.5  M6
PM2000C 50 230 800 0.55 1380 2.50  210/235 5-40 60 10.0  M6 L203xW86
60 250 800 0.60  1450 5.20  110/125 5-40 60 10.0  M6
HP2400C 50 240 900 0.90  1380 3.30  210/235 5-40 75 17.0  M7 L246xW127
60 258 900 1.00  1450 6.80  110/125 5-40 75 17.0  M7
PM3000C 50 250 1000 1.50  1380 4.20  210/235 5-40 76 17.5  M7 L246xW127
60 270 1000 1.70  1450 9.00  110/125 5-40 76 17.5  M7

Why use a Rocking Piston Product?

Variety
Pransch oilless Rocking Piston air compressors and vacuum pumps, available in single, twin, miniature, and tankmounted
styles, are the perfect choice for hundreds of applications. Choose from dual frequency, shaded pole,
and permanent split capacitor (psc) electric motors with AC multi-voltage motors to match North American,
European, and CHINAMFG power supplies. A complete line of recommended accessories as well as 6, 12, and
24 volt DC models in brush and brushless types are also available.

Performance
The rocking piston combines the best characteristics of piston and diaphragm air compressors into a small unit
with exceptional performance. Air flow capabilities from 3.4 LPM to 5.5 CFM (9.35 m3/h), pressure to 175 psi
(12.0 bar) and vacuum capabilities up to 29 inHg (31 mbar). Horsepowers range from 1/20 to 1/2 HP
(0.04 to 0.37 kW).

Reliable
These pumps are made to stand up through years of use. The piston rod and bearing assembly are bonded
together, not clamped; they will not slip, loosen, or misalign to cause trouble.

Clean Air
Because CHINAMFG pumps are oil-free, they are ideal for use in applications in laboratories, hospitals, and the
food industry where oil mist contamination is undesirable.

Application:

  1. Transportation application include:Auto detailing Equipment,Braking Systems,Suspension Systems,Tire Inflators
  2. Food and Beverage application include:beverage dispensing,coffee and Espresso equipment,Food processing and packaging,Nitrogen Generation
  3. Medical and laboratory application include:Body fluid Analysis equipment,Dental compressors and hand tools,dental vacuum ovens,Dermatology equipment,eye surgery equipment,lab automation,Liposuction equipment,Medical aspiration,Nitrogen Generation,Oxygen concentrators,Vacuum Centrifuge,vacuum filtering,ventilators
  4. General industrial application include:Cable pressurization,core drilling
  5. Environmental application include:Dry sprinkler systems,Pond Aeration,Refrigerant Reclamation,Water Purification Systems
  6. Printing and packaging application include:vacuum frames
  7. material Handling application include:vacuum mixing

 

 

/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Lubrication Style: Oil-free
Cooling System: Air Cooling
Structure Type: Closed Type
Compress Level: Single-Stage
Refrigerant Type: Air
Material: Steel
Customization:
Available

|

air compressor

How does variable speed drive technology improve air compressor efficiency?

Variable Speed Drive (VSD) technology improves air compressor efficiency by allowing the compressor to adjust its motor speed to match the compressed air demand. This technology offers several benefits that contribute to energy savings and enhanced overall system efficiency. Here’s how VSD technology improves air compressor efficiency:

1. Matching Air Demand:

Air compressors equipped with VSD technology can vary the motor speed to precisely match the required compressed air output. Traditional fixed-speed compressors operate at a constant speed regardless of the actual demand, leading to energy wastage during periods of lower air demand. VSD compressors, on the other hand, ramp up or down the motor speed to deliver the necessary amount of compressed air, ensuring optimal energy utilization.

2. Reduced Unloaded Running Time:

Fixed-speed compressors often run unloaded during periods of low demand, where they continue to consume energy without producing compressed air. VSD technology eliminates or significantly reduces this unloaded running time by adjusting the motor speed to closely follow the air demand. As a result, VSD compressors minimize energy wastage during idle periods, leading to improved efficiency.

3. Soft Starting:

Traditional fixed-speed compressors experience high inrush currents during startup, which can strain the electrical system and cause voltage dips. VSD compressors utilize soft starting capabilities, gradually ramping up the motor speed instead of instantly reaching full speed. This soft starting feature reduces mechanical and electrical stress, ensuring a smooth and controlled startup, and minimizing energy spikes.

4. Energy Savings at Partial Load:

In many applications, compressed air demand varies throughout the day or during different production cycles. VSD compressors excel in such scenarios by operating at lower speeds during periods of lower demand. Since power consumption is proportional to motor speed, running the compressor at reduced speeds significantly reduces energy consumption compared to fixed-speed compressors that operate at a constant speed regardless of the demand.

5. Elimination of On/Off Cycling:

Fixed-speed compressors often use on/off cycling to adjust the compressed air output. This cycling can result in frequent starts and stops, which consume more energy and cause mechanical wear. VSD compressors eliminate the need for on/off cycling by continuously adjusting the motor speed to meet the demand. By operating at a consistent speed within the required range, VSD compressors minimize energy losses associated with frequent cycling.

6. Enhanced System Control:

VSD compressors offer advanced control capabilities, allowing for precise monitoring and adjustment of the compressed air system. These systems can integrate with sensors and control algorithms to maintain optimal system pressure, minimize pressure fluctuations, and prevent excessive energy consumption. The ability to fine-tune the compressor’s output based on real-time demand contributes to improved overall system efficiency.

By utilizing variable speed drive technology, air compressors can achieve significant energy savings, reduce operational costs, and enhance their environmental sustainability by minimizing energy wastage and optimizing efficiency.

air compressor

What is the role of air compressors in manufacturing and industrial processes?

Air compressors play a crucial role in various manufacturing and industrial processes, providing a reliable source of compressed air that powers a wide range of equipment and tools. Here are some key roles of air compressors in manufacturing and industrial settings:

1. Pneumatic Tools and Equipment:

Air compressors power a wide range of pneumatic tools and equipment used in manufacturing processes. These tools include impact wrenches, air drills, sanders, grinders, nail guns, and spray guns. Compressed air provides the necessary force and energy for these tools, enabling efficient and precise operations.

2. Automation and Control Systems:

Compressed air is used in automation and control systems within manufacturing facilities. Pneumatic actuators and valves use compressed air to control the movement of machinery and components. These systems are widely used in assembly lines, packaging operations, and material handling processes.

3. Air Blowing and Cleaning:

Compressed air is employed for blowing and cleaning applications in manufacturing and industrial processes. Air blowguns and air nozzles are used to remove debris, dust, and contaminants from surfaces, machinery, and products. Compressed air is also used for drying, cooling, and purging operations.

4. Air Separation and Gas Generation:

Air compressors are used in air separation plants to generate industrial gases such as nitrogen, oxygen, and argon. These gases are essential for various industrial processes, including metal fabrication, chemical production, and food packaging.

5. HVAC Systems:

Compressed air is utilized in heating, ventilation, and air conditioning (HVAC) systems. It powers pneumatic actuators for damper control, pneumatic controls for pressure regulation, and pneumatic valves for flow control in HVAC applications.

6. Air Compression for Storage and Transport:

Compressed air is used for storage and transport purposes in manufacturing and industrial settings. It is often used to pressurize storage tanks or containers that hold gases or liquids. Compressed air also facilitates the transfer of materials through pipelines and pneumatic conveying systems.

7. Process Instrumentation:

Compressed air is utilized in process instrumentation and control systems. It powers pneumatic instruments such as pressure gauges, flow meters, and control valves. These instruments play a critical role in monitoring and regulating various parameters in industrial processes.

8. Material Handling and Pneumatic Conveying:

In manufacturing and industrial facilities, compressed air is used for material handling and pneumatic conveying systems. It enables the movement of bulk materials such as powders, granules, and pellets through pipelines, facilitating efficient and controlled material transfer.

Overall, air compressors are vital components in manufacturing and industrial processes, providing a versatile and efficient source of power for a wide range of applications. The specific role of air compressors may vary depending on the industry, process requirements, and operational needs.

air compressor

What maintenance is required for air compressors?

Maintaining air compressors is essential to ensure their optimal performance, longevity, and safe operation. Regular maintenance helps prevent breakdowns, improves efficiency, and reduces the risk of accidents. Here are some key maintenance tasks for air compressors:

1. Regular Inspection: Perform visual inspections of the air compressor to identify any signs of wear, damage, or leaks. Inspect the compressor, hoses, fittings, and connections for any abnormalities. Pay attention to oil leaks, loose bolts, and worn-out components.

2. Oil Changes: If your air compressor has an oil lubrication system, regular oil changes are crucial. Follow the manufacturer’s recommendations for the frequency of oil changes and use the recommended oil type. Dirty or degraded oil can impact compressor performance and lead to premature wear.

3. Air Filter Cleaning or Replacement: Clean or replace the air filter regularly to ensure proper air intake and prevent contaminants from entering the compressor. Clogged or dirty filters can restrict airflow and reduce efficiency.

4. Drain Moisture: Air compressors produce moisture as a byproduct of the compression process. Accumulated moisture in the tank can lead to rust and corrosion. Drain the moisture regularly from the tank to prevent damage. Some compressors have automatic drains, while others require manual draining.

5. Belt Inspection and Adjustment: If your compressor has a belt-driven system, inspect the belts for signs of wear, cracks, or tension issues. Adjust or replace the belts as necessary to maintain proper tension and power transmission.

6. Tank Inspection: Inspect the compressor tank for any signs of corrosion, dents, or structural issues. A damaged tank can be hazardous and should be repaired or replaced promptly.

7. Valve Maintenance: Check the safety valves, pressure relief valves, and other valves regularly to ensure they are functioning correctly. Test the valves periodically to verify their proper operation.

8. Motor and Electrical Components: Inspect the motor and electrical components for any signs of damage or overheating. Check electrical connections for tightness and ensure proper grounding.

9. Keep the Area Clean: Maintain a clean and debris-free area around the compressor. Remove any dirt, dust, or obstructions that can hinder the compressor’s performance or cause overheating.

10. Follow Manufacturer’s Guidelines: Always refer to the manufacturer’s manual for specific maintenance instructions and recommended service intervals for your air compressor model. They provide valuable information on maintenance tasks, lubrication requirements, and safety precautions.

Regular maintenance is vital to keep your air compressor in optimal condition and extend its lifespan. It’s also important to note that maintenance requirements may vary depending on the type, size, and usage of the compressor. By following a comprehensive maintenance routine, you can ensure the reliable operation of your air compressor and maximize its efficiency and longevity.

China Custom 6cfm Oilless Piston Pump Portable Engine Dental Air Compressor   with Hot sellingChina Custom 6cfm Oilless Piston Pump Portable Engine Dental Air Compressor   with Hot selling
editor by CX 2024-01-09

China Good quality Air-Cooled Water-Cooled Natural Gas Piston Compressor supplier

Product Description

Detailed Photos

High Purity Explosion-Proof Methane Natural Gas Booster Compressor

Description&Advantages

Product Descriptions:
Mainly used for boosting and transporting natural gas into the pipeline network (natural gas extraction from pipelines, recovery and cHangZhou of combustible gases). It can also be used for stirring in the pharmaceutical and brewing industries, pressurized gas transportation in the chemical industry, blow molding for bottle production in the food industry, and dust removal from parts in machinery manufacturing

Advantages:
Our products, incorporating technology from Austria’s LMF and Germany’s CHINAMFG Demag companies, exhibit high reliability. Wearable parts like gas valves and piston rings use products from Austria’s Hoerbiger company, with a lifespan exceeding 8000 hours. The system supports soft starting, allowing frequent start and stop cycles for the compressor.  It features a wide intake range for broad adaptability. The overall skid-mounted structure results in low noise and is easy to install in urban areas, leading to investment savings.
It is equipped with a CHINAMFG PLC control system for high automation, ABB soft start (or variable frequency), and features automatic shutdown with audible and visual alarms in case of faults

Product Parameters

Model Flow
m3/h
Inlet Pressure
(Mpa)
Outlet Pressure (Mpa) Weight(Kg) Power(Kw)
VW-6/16-24 360 1.6 2.4 2600 110
VW-6/(0-1.62)-(5-21) 360 0-0.162 0.5-2.1 2350 75
WW-26.7/0.5-10 1602 0.05 1 4500 250
DW-2/0.2-16 120 0.02 1.6 1500 22
WW-3/8 180 normal pressure 0.8 1500 22
2VW-50/3.5 3000 normal pressure 0.35 6000 220
2VW-16.7/0.5-20 1002 0.05 2 6500 185
ZW-0.6/6-10 36 0.6 1 760 5.5
ZW-0.8/12 48 normal pressure 1.2 1200 7.5
DW-9.5/7 570 normal pressure 0.7 2600 55
VW-4.5/0.5-10 270 0.05 1 2100 37
2VW-25/25 1500 normal pressure 2.5 2100 250
2VW-50/3.5 3000 normal pressure 0.35 6000 220
DW-4.5/0.5-13 270 0.05 1.3 2500 18.5
ZW-0.46/(5-10)-(15-20) 27.6 0.5-1.0 1.5-2.0 850 11
VW-5.6/(1.5-2)-25 336 0.15-0.2 2.5 2000 55
V-6.5/(1-3)-7 390 0.1-0.3 0.7 1900 37
WW-2.5/3-250 150 0.3 25 3500 110

Our Factory

 

Part of Customer Visit

 

Certifications & Testing

 

Related Product

 

FAQ

Q:Are you a factory?

A:Yes, we are indeed a factory. We specialize in manufacturing high-quality Air/Gas Compressors and are proud to be a primary source for these products.

Q:How long is your delivery time?
A:It varies depending on the specific situation. For our standard configuration compressors, the delivery time is around 30 days. For customized compressors, it usually takes about 30-45 days.

Q:What technical support do you offer?
A:We offer comprehensive technical support to our clients, including remote assistance for installation and commissioning processes. Additionally, we have a team of seasoned engineers ready to be deployed to international client locations for meticulous on-site debugging, installation, and post-installation services.

Q:What is your warranty period?
A:Our warranty policy is valid for a period of 18 months from the date of commissioning at the end customer’s site or 21 months from the date of receipt by the purchaser, whichever comes first. This comprehensive coverage is designed to ensure total customer satisfaction and the reliability of our products

Q:How do you package the compressors?
A:For smaller compressors, we utilize robust plywood boxes that conform to export specifications.
    For the larger units, we strategically place them in freight containers, implementing secure fastening methods to safeguard            against any potential damage during the shipping process.

Q:What are your payment terms?
A:Usually, the payment is made by T/T with a 30% down payment CHINAMFG confirmation of the Proforma Invoice (PI), and the balance is to be paid after inspection and before shipment. We accept both TT and L/C at sight.

Send message  Get product Offer & Brochure!!!

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After-sales Service: Local Teams
Warranty: 18 Months
Principle: Reciprocating Compressor
Application: Back Pressure Type, Intermediate Back Pressure Type, High Back Pressure Type, Low Back Pressure Type
Performance: Low Noise, Variable Frequency, Explosion-Proof
Mute: Mute
Samples:
US$ 40000/Set
1 Set(Min.Order)

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Request Sample

Customization:
Available

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air compressor

How are air compressors employed in the petrochemical industry?

Air compressors play a vital role in the petrochemical industry, where they are employed for various applications that require compressed air. The petrochemical industry encompasses the production of chemicals and products derived from petroleum and natural gas. Here’s an overview of how air compressors are utilized in the petrochemical industry:

1. Instrumentation and Control Systems:

Air compressors are used to power pneumatic instrumentation and control systems in petrochemical plants. These systems rely on compressed air to operate control valves, actuators, and other pneumatic devices that regulate processes such as flow control, pressure control, and temperature control. Compressed air provides a reliable and clean source of energy for these critical control mechanisms.

2. Pneumatic Tools and Equipment:

Petrochemical plants often utilize pneumatic tools and equipment for various tasks such as maintenance, repair, and construction activities. Air compressors supply the necessary compressed air to power these tools, including pneumatic drills, impact wrenches, grinders, sanders, and painting equipment. The versatility and convenience of compressed air make it an ideal energy source for a wide range of pneumatic tools used in the industry.

3. Process Air and Gas Supply:

Petrochemical processes often require a supply of compressed air and gases for specific applications. Air compressors are employed to generate compressed air for processes such as oxidation, combustion, and aeration. They may also be used to compress gases like nitrogen, hydrogen, and oxygen, which are utilized in various petrochemical reactions and treatment processes.

4. Cooling and Ventilation:

Petrochemical plants require adequate cooling and ventilation systems to maintain optimal operating conditions and ensure the safety of personnel. Air compressors are used to power cooling fans, blowers, and air circulation systems that help maintain the desired temperature, remove heat generated by equipment, and provide ventilation in critical areas.

5. Nitrogen Generation:

Nitrogen is widely used in the petrochemical industry for applications such as blanketing, purging, and inerting. Air compressors are utilized in nitrogen generation systems, where they compress atmospheric air, which is then passed through a nitrogen separation process to produce high-purity nitrogen gas. This nitrogen is used for various purposes, including preventing the formation of explosive mixtures, protecting sensitive equipment, and maintaining the integrity of stored products.

6. Instrument Air:

Instrument air is essential for operating pneumatic instruments, analyzers, and control devices throughout the petrochemical plant. Air compressors supply compressed air that is treated and conditioned to meet the stringent requirements of instrument air quality standards. Instrument air is used for tasks such as pneumatic conveying, pneumatic actuators, and calibration of instruments.

By employing air compressors in the petrochemical industry, operators can ensure reliable and efficient operation of pneumatic systems, power various tools and equipment, support critical processes, and maintain safe and controlled environments.

air compressor

How do you choose the right air compressor for woodworking?

Choosing the right air compressor for woodworking is essential to ensure efficient and effective operation of pneumatic tools and equipment. Here are some factors to consider when selecting an air compressor for woodworking:

1. Required Air Volume (CFM):

Determine the required air volume or cubic feet per minute (CFM) for your woodworking tools and equipment. Different tools have varying CFM requirements, so it is crucial to choose an air compressor that can deliver the required CFM to power your tools effectively. Make sure to consider the highest CFM requirement among the tools you’ll be using simultaneously.

2. Tank Size:

Consider the tank size of the air compressor. A larger tank allows for more stored air, which can be beneficial when using tools that require short bursts of high air volume. It helps maintain a consistent air supply and reduces the frequency of the compressor cycling on and off. However, if you have tools with continuous high CFM demands, a larger tank may not be as critical.

3. Maximum Pressure (PSI):

Check the maximum pressure (PSI) rating of the air compressor. Woodworking tools typically operate within a specific PSI range, so ensure that the compressor can provide the required pressure. It is advisable to choose an air compressor with a higher maximum PSI rating to accommodate any future tool upgrades or changes in your woodworking needs.

4. Noise Level:

Consider the noise level of the air compressor, especially if you’ll be using it in a residential or shared workspace. Some air compressors have noise-reducing features or are designed to operate quietly, making them more suitable for woodworking environments where noise control is important.

5. Portability:

Assess the portability requirements of your woodworking projects. If you need to move the air compressor frequently or work in different locations, a portable and lightweight compressor may be preferable. However, if the compressor will remain stationary in a workshop, a larger, stationary model might be more suitable.

6. Power Source:

Determine the power source available in your woodworking workspace. Air compressors can be powered by electricity or gasoline engines. If electricity is readily available, an electric compressor may be more convenient and cost-effective. Gasoline-powered compressors offer greater flexibility for remote or outdoor woodworking projects where electricity may not be accessible.

7. Quality and Reliability:

Choose an air compressor from a reputable manufacturer known for producing reliable and high-quality equipment. Read customer reviews and consider the warranty and after-sales support offered by the manufacturer to ensure long-term satisfaction and reliability.

8. Budget:

Consider your budget and balance it with the features and specifications required for your woodworking needs. While it’s important to invest in a reliable and suitable air compressor, there are options available at various price points to accommodate different budgets.

By considering these factors and evaluating your specific woodworking requirements, you can choose an air compressor that meets the demands of your tools, provides efficient performance, and enhances your woodworking experience.

air compressor

How do you choose the right size of air compressor for your needs?

Choosing the right size of air compressor is essential to ensure optimal performance and efficiency for your specific needs. Here are some factors to consider when selecting the appropriate size:

1. Air Demand: Determine the air demand requirements of your applications. Calculate the total CFM (Cubic Feet per Minute) needed by considering the air consumption of all the pneumatic tools and equipment that will be operated simultaneously. Choose an air compressor with a CFM rating that meets or exceeds this total demand.

2. Pressure Requirements: Consider the required operating pressure for your applications. Check the PSI (Pounds per Square Inch) rating of the tools and equipment you will be using. Ensure that the air compressor you choose can deliver the necessary pressure consistently.

3. Duty Cycle: Evaluate the duty cycle of the air compressor. The duty cycle represents the percentage of time the compressor can operate within a given time period without overheating or experiencing performance issues. If you require continuous or heavy-duty operation, choose a compressor with a higher duty cycle.

4. Power Source: Determine the available power source at your location. Air compressors can be powered by electricity or gasoline engines. Ensure that the chosen compressor matches the available power supply and consider factors such as voltage, phase, and fuel requirements.

5. Portability: Assess the portability requirements of your applications. If you need to move the air compressor frequently or use it in different locations, consider a portable or wheeled compressor that is easy to transport.

6. Space and Noise Constraints: Consider the available space for installation and the noise restrictions in your working environment. Choose an air compressor that fits within the allocated space and meets any noise regulations or requirements.

7. Future Expansion: Anticipate any potential future expansions or increases in air demand. If you expect your air demand to grow over time, it may be wise to choose a slightly larger compressor to accommodate future needs and avoid the need for premature replacement.

8. Budget: Consider your budgetary constraints. Compare the prices of different air compressor models while ensuring that the chosen compressor meets your specific requirements. Keep in mind that investing in a higher-quality compressor may result in better performance, durability, and long-term cost savings.

By considering these factors and evaluating your specific needs, you can choose the right size of air compressor that will meet your air demand, pressure requirements, and operational preferences, ultimately ensuring efficient and reliable performance.

China Good quality Air-Cooled Water-Cooled Natural Gas Piston Compressor   supplier China Good quality Air-Cooled Water-Cooled Natural Gas Piston Compressor   supplier
editor by CX 2024-01-02