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China supplier Tag5561e Tag5546e Refrigeration Air Conditioner Compressor R22 Gas CHINAMFG Chiller Compressor Piston Type Air Compressor wholesaler

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.

 

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Installation Type: Movable Type
Lubrication Style: Lubricated
Cylinder Position: Vertical
Model: Tag5546e
Transport Package: Wooden/Cartoon Box
Specification: 26*26*58CM
Samples:
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air compressor

Can air compressors be used for painting and sandblasting?

Yes, air compressors can be used for both painting and sandblasting applications. Here’s a closer look at how air compressors are utilized for painting and sandblasting:

Painting:

Air compressors are commonly used in painting processes, especially in automotive, industrial, and construction applications. Here’s how they are involved:

  • Spray Guns: Air compressors power spray guns used for applying paint coatings. The compressed air atomizes the paint, creating a fine mist that can be evenly sprayed onto surfaces. The pressure and volume of the compressed air impact the spray pattern, coverage, and overall finish quality.
  • Paint Mixers and Agitators: Compressed air is often used to power mixers and agitators that ensure proper blending of paint components. These devices use the compressed air to stir or circulate the paint, preventing settling and maintaining a consistent mixture.
  • Airbrushing: Air compressors are essential for airbrushing techniques, which require precise control over airflow and pressure. Airbrushes are commonly used in artistic applications, such as illustrations, murals, and fine detailing work.

Sandblasting:

Air compressors play a crucial role in sandblasting operations, which involve propelling abrasive materials at high velocity to clean, etch, or prepare surfaces. Here’s how air compressors are used in sandblasting:

  • Blasting Cabinets: Air compressors power blasting cabinets or booths, which are enclosed spaces where the sandblasting process takes place. The compressed air propels the abrasive media, such as sand or grit, through a nozzle or gun, creating a forceful stream that impacts the surface being treated.
  • Abrasive Blasting Pots: Air compressors supply air to abrasive blasting pots or tanks that store and pressurize the abrasive media. The compressed air from the compressor enters the pot, pressurizing it and allowing for a controlled release of the abrasive material during the sandblasting process.
  • Air Dryers and Filters: In sandblasting applications, it is crucial to have clean, dry air to prevent moisture and contaminants from affecting the abrasive blasting process and the quality of the surface being treated. Air compressors may be equipped with air dryers and filters to remove moisture, oil, and impurities from the compressed air.

When using air compressors for painting or sandblasting, it is important to consider factors such as the compressor’s pressure and volume output, the specific requirements of the application, and the type of tools or equipment being used. Consult the manufacturer’s guidelines and recommendations to ensure the air compressor is suitable for the intended painting or sandblasting tasks.

Proper safety measures, such as wearing protective gear and following established protocols, should always be followed when working with air compressors for painting and sandblasting applications.

air compressor

How are air compressors employed in the mining industry?

Air compressors play a crucial role in the mining industry, providing reliable and efficient power for various mining operations. Here are some common applications of air compressors in mining:

1. Exploration and Drilling:

Air compressors are used during exploration and drilling activities in the mining industry. Compressed air is used to power drilling rigs, pneumatic hammers, and other drilling equipment. The high-pressure air generated by the compressor helps in drilling boreholes, extracting core samples, and exploring potential mineral deposits.

2. Ventilation and Air Quality Control:

Air compressors are employed in underground mining to provide ventilation and control air quality. Compressed air is used to operate ventilation fans and air circulation systems, ensuring adequate airflow and removing harmful gases, dust, and fumes from the mining tunnels and work areas.

3. Material Conveyance:

In mining operations, air compressors are used for material conveyance. Pneumatic systems powered by air compressors are utilized to transport materials such as coal, ore, and other minerals. Compressed air is used to operate pneumatic conveyors, pumps, and material handling equipment, allowing for efficient and controlled movement of bulk materials.

4. Dust Suppression:

Air compressors are employed for dust suppression in mining areas. Compressed air is used to spray water or other suppressants to control dust generated during mining activities. This helps in maintaining a safe and healthy work environment, reducing the risks associated with dust inhalation and improving visibility.

5. Instrumentation and Control:

Air compressors are used for instrumentation and control purposes in mining operations. Compressed air is utilized to power pneumatic control systems, control valves, and actuators. These systems regulate the flow of fluids, control equipment movements, and ensure the proper functioning of various mining processes.

6. Explosive Applications:

In mining, air compressors are used for explosive applications. Compressed air is employed to power pneumatic tools used for rock fragmentation, such as rock drills and pneumatic breakers. The controlled power of compressed air enables safe and efficient rock breaking without the need for traditional explosives.

7. Maintenance and Repair:

Air compressors are essential for maintenance and repair activities in the mining industry. Compressed air is used for cleaning machinery, removing debris, and powering pneumatic tools for equipment maintenance and repair tasks. The versatility and portability of air compressors make them valuable assets in maintaining mining equipment.

It is important to note that different mining operations may have specific requirements and considerations when selecting and using air compressors. The size, capacity, and features of air compressors can vary based on the specific mining application and environmental conditions.

By utilizing air compressors effectively, the mining industry can benefit from increased productivity, improved safety, and efficient operation of various mining processes.

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 supplier Tag5561e Tag5546e Refrigeration Air Conditioner Compressor R22 Gas CHINAMFG Chiller Compressor Piston Type Air Compressor   wholesaler China supplier Tag5561e Tag5546e Refrigeration Air Conditioner Compressor R22 Gas CHINAMFG Chiller Compressor Piston Type Air Compressor   wholesaler
editor by CX 2024-02-22

China best Danfos Scroll Parts Air Cooler Refrigeration Compressor Danfos 50Hz R22 Single Hlm075t4 in Stock manufacturer

Product Description

 

 

Hermetic piston compressor, MT/Z medium and high temperature compressor specifications
Rated Performance R22,R407C-50HZ
Model Rated Performance* MT-R22 Rated Performance** MTZ-R407C
Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W) Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W)
MT/MTZ 18 JA 3881 1.45 2.73 2.68 3726 1.39 2.47 2.68
MT/MTZ 22 JC 5363 1.89 3.31 2.84 4777 1.81 3.31 2.64
MT/MTZ 28 JE 7378 2.55 4.56 2.89 6137 2.35 4.39 2.61
MT/MTZ 32 JF 8064 2.98 4.97 2.70 6941 2.67 5.03 2.60
MT/MTZ 36 JG 9272 3.37 5.77 27.5 7994 3.12 5.71 2.56
MT/MTZ 40 JH 1571 3.85 6.47 2.72 9128 3.61 6.45 2.53
MT/MTZ 44 HJ 11037 3.89 7.37 2.84 9867 3.63 6.49 2.72
MT/MTZ 50 HK 12324 4.32 8.46 2.85 11266 4.11 7.34 2.74
MT/MTZ 56 HL 13771 5.04 10.27 2.73 12944 4.69 8.36 2.76
MT/MTZ 64 HM 15820 5.66 9.54 2.79 14587 5.25 9.35 2.78
MT/MTZ 72 HN 17124 6.31 10.54 2.71 16380 5.97 10.48 2.74
MT/MTZ 80 HP 19534 7.13 11.58 2.74 18525 6.83 11.83 2.71
MT/MTZ 100 HS 23403 7.98 14.59 2.93 22111 7.85 13.58 2.82
MT/MTZ 125 HU 3571 10.66 17.37 2.85 29212 10.15 16.00 2.88
MT/MTZ 144 HV 34340 11.95 22.75 2.87 32934 11.57 18.46 2.85
MT/MTZ 160 HW 38273 13.39 22.16 2.86 37386 13.28 21.40 2.82
MTM/MTZ200 HSS 46807 15.97 29.19 2.93 43780 15.54 26.90 2.82
MTM/MTZ250HUU 6 0571 21.33 34.75 2.85 57839 20.09 31.69 2.88
MTM/MTZ288 HVV 68379 23.91 45.50 2.87 65225 22.92 36.56 2.85
MTM/MTZ 320 HWW 76547 26.79 44.32 2.86 74571 26.30 42.37 2.81

 

Rated Performance*High Efficiency CompressorR22-50HZ
Model Capacity/(W) Input Power (KW) Inputcuprret/(A) COP(W/W)
MT 45 HJ 10786 3.62 6.86 2.98
MT 51 HK 12300 4.01 7.86 3.07
MT 57 HL 13711 4.54 9.24 3.02
MT 65 HM 15763 5.23 8.81 3.01
MT 73 HN 17863 5.98 9.99 2.99
MT 81 HP 25718 6.94 11.27 2.93

R134a,R404A,R507-50Hz
 Model Rated Performance* R134A Rated Performance**R404A,R507-50HZ
Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W) Capacity(W)  Input Power (KW)  Input current(A)  COP  (W/W)
MT/MTZ 18 JA 2553 0.99 2.19 2.58 1865 1.2 2.47 1.56
MT/MTZ22 JC 3352 1.20 2.51 2.80 2673 1.56 2.96 1.71
MT/MTZ 28 JE 4215 1.53 3.30 2.75 3343 1.95 3.80 1.72
MT/MTZ 32 JF 4951 1.87 3.94 2.65 3747 2.28 4.51 1.64
MT/MTZ 36 JG 6005 2.13 4.09 2.81 4371 2.66 4.91 1.64
MT/MTZ 40 JH 6398 2.33 4.89 2.74 4889 3.00 5.36 1.63
MT/MTZ 44 HJ 6867 2.52 5.65 2.72 5152 3.16 6.37 1.63
MT/MTZ 50 HK 8071 2.88 5.50 2.80 6152 3.61 6.53 1.70
MT/MTZ 56 HL 9069 3.21 5.83 2.82 7001 4.00 7.07 1.75
MT/MTZ 64 HM 1571 3.62 6.96 2.86 8132 4.54 8.30 1.79
MT/MTZ 72 HP 11853 4.01 7.20 2.96 9153 4.99 8.64 1.84
MT/MTZ 80 HP 13578 4.63 8.45 2.93 10524 5.84 10.12 1.80
MT/MTZ 100 HS 15529 5.28 10.24 2.94 12571 6.83 12.16 1.76
MT/MTZ 125 HU 19067 6.29 10.80 3.03 15714 8.53 13.85 1.84
MT/MTZ 144 HV 23620 7.83 13.78 3.02 18076 9.74 16.25 1.86
MT/MTZ 160 HW 25856 8.57 14.67 3.02 25713 11.00 17.94 1.84
MTM/MTZ200 HSS 3571 10.45 20.28 2.94 23800 13.53 24.06 1.76
MTM/MTZ 250 HUU 37746 12.45 21.38 3.03 31121 16.88 27.43 1.84
MTM/MTZ288 HVV 46773 15.49 27.29 3.02 35779 19.28 32.18 1.86
MTM/MTZ 320 HWW 51169 16.98 29.06 3.01 40093 21.76 35.51 1.84

 

50HZ DATA  
Model  50Hz Nominal Cooling Capacity/Capacity Input Power COP E.E.R. c Displacement Displacement Injection flow d Net.W
TR W Btu/h KW W/W Btu/h/W cm³/rev m3/h dm3 kg
R22 Single Sm084 7 20400 69600 6.12 3.33 11.4 114.5 19.92 3.3 64
SM090 7.5 21800 74400 6.54 3.33 11.4 120.5 20.97 3.3 65
SM100 8 23100 79000 6.96 3.33 11.3 127.2 22.13 3.3 65
SM110 9 25900 88600 7.82 3.32 11.3 144.2 25.09 3.3 73
SM112 9.5 27600 94400 7.92 3.49 11.9 151.5 26.36 3.3 64
SM115 9.5 28000 95600 8.31 3.37 11.5 155.0 26.97 3.8 78
SM120 10 35710 157100 8.96 3.36 11.5 166.6 28.99 3.3 73
SM124 10 31200 106300 8.75 3.56 12.2 169.5 29.5 3.3 64
SM125 10 35710 157100 8.93 3.37 11.5 166.6 28.99 3.8 78
SM147 12 36000 123000 10.08 3.58 12.2 193.5 33.7 3.3 67
SM148 12 36100 123100 10.80 3.34 11.4 199.0 34.60 3.6 88
SM160 13 39100 133500 11.60 3.37 11.5 216.6 37.69 4.0 90
SM161 13 39000 133200 11.59 3.37 11.5 216.6 37.69 3.6 88
SM175 14 42000 143400 12.46 3.37 11.5 233.0 40.54 6.2 100
SM/SY185 15 45500 155300 13.62 3.34 11.4 249.9 43.48 6.2 100
SY240 20 61200 2 0571 0 18.20 3.36 11.5 347.8 60.50 8.0 150
SY300 25 78200 267000 22.83 3.43 11.7 437.5 76.10 8.0 157
SY380 30 94500 322700 27.4 3.46 11.8 531.2 92.40 8.4 158
R107C Single SZ084 7 19300 66000 6.13 3.15 10.7 114.5 19.92 3.3 64
SZ090 7.5 20400 69600 6.45 3.16 10.8 120.5 20.97 3.3 65
SZ100 8 21600 73700 6.84 3.15 10.8 127.2 22.13 3.3 65
SZ110 9 24600 84000 7.76 3.17 10.8 144.2 25.09 3.3 73
SZ115 9.5 26900 91700 8.49 3.16 10.8 155.0 26.97 3.8 78
SZ120 10 28600 97600 8.98 3.18 10.9 166.6 28.99 3.3 73
SZ125 10 28600 97500 8.95 3.19 10.9 166.6 28.99 3.8 78
SZ148 12 35100 119800 10.99 3.19 10.9 199.0 34.60 3.6 88
SZ160 13 38600 131800 11.77 3.28 11.2 216.6 37.69 4.0 90
SZ161 13 37900 129500 11.83 3.21 10.9 216.6 37.69 3.6 88
SZ175 14 45710 136900 12.67 3.17 10.8 233.0 40.54 6.2 100
SZ185 15 43100 147100 13.62 3.16 10.8 249.9 43.48 6.2 100
SZ240 20 59100 201800 18.60 3.18 10.9 347.8 60.50 8.0 150
SZ300 25 72800 248300 22.70 3.20 10.9 437.5 76.10 8.0 157
SZ380 30 89600 305900 27.60 3.25 11.1 431.2 92.40 8.4 158

Model Nominal Cooling Capacity 60Hz Nominal Cooling Capacity/Capacity Input Power maximum rated current COP  Displacement  Displacement  Injection flow Net.W
TR W Btu/h kW MCC COP W/W EERBtu/h/W cmVrev m3/h dm3 kg
R22 HRM032U4 2.7 7850 26790 2.55 9.5 3.08 10.5 43.8 7.6 1.06 31
HRM034U4 2.8 8350 28490 2.66 9.5 3.14 10.5 46.2 8.03 1.06 31
HRM038U4 32 9240 31520 2.94 10.0 3.14 10.7 46.2 8.03 1.06 31
HRM040U4  3.3 9710 33120 2.98 10 3.26 11.1 54.4 9.47 1.06 31
HRM042U4 35 10190 34770 3.13 11.0 3.26 11.1 57.2 9.95 1.06 31
HRM045U4 3.8 10940 37310 3.45 12 3.17 10.8 61.5 10.69 1.33 31
HRM047U4 3.9 11500 39250 3.57 12.0 3.23 11.0 64.1 11.15 1.33 31
HRM048U4 4 11510 39270 3.57 12.5 3.23 11 64.4 11.21 1.57 37
HRM051T4 4.3 12390 44280 3.67 13.0 3.37 11.5 68.8 11.98 1.57 37
HRM051U4 4.3 12800 43690 3.83 13 3.34 11.4 68.8 11.98 1.57 37
HRM054U4 4.5 13390 45680 3.97 13.1 3.37 11.5 72.9 12.69 1.57 37
HRM058U4 4.8 14340 48930 4.25 15 3.37 11.5 78.2 13.6 1.57 37
HRM060T4 5.0 14570 49720 4.28 15.0 3.40 11.6 81.0 14.09 1.57 37
HRM060U4 5.0  14820 5 0571 4.4 15 3.37 11.5 81 14.09 1.57 37
HLM068T4 5.7 16880 57580 5.00 15.0 3.37 11.5 93.1 16.20 1.57 37
HLM072T4 6.0  17840 6 0571 5.29 15 3.37 11.5 98.7 17.2 1.57 37
HLM075T4 6.3 18430 62880 5.37 16.0 3.43 11.7 102.8 17.88 1.57 37
HLM081T4 6.8 19890 67880 5.8 17 3.43 11.7 110.9 19.3 1.57 37
HCM094T4 7.8 23060 78670 6.80 21.0 3.39 11.6 126.0 21.93 2.66 44
HCM109T4 9.1 26690 91070 7.77 24 3.43 11.7 148.8 25.89 2.66 44
HCM120T4 10.0 29130 99390 8.51 25.0 3.42 11.7 162.4 28.26 2.66 44
R407C HRP034T4  2.8 7940 27080 2.68 9.5 2.96 10.1 46.2 8 1.06 31
HRP038T4 3.2 8840 30150 2.82 11 3.14 10.7 51.6 8.98 1.06 31
HRP040T4 3.3 9110 31080 3.14 11.5 2.9 9.9 54.4 9.47 1.06 31
HRP042T4 3.5 9580 32680 3.3 10 2.9 9.9 57.2 9.95 1.06 31
HRP045T4 3.8 1571 36890 3.58 12 3.02 10.3 61.5 10.69 1.33 31
HRP047T4 3.9 11130 37980 3.69 12 3.02 10.3 64.1 11.15          1.33 31
HRP048T4 4.0  11100 37880 3.35 12 3.31 11.3 64.4 1L21 1.57 37
HRP051T4 4.3 12120 41370 3.83 13 3.17 10.8 68.8 11.98 1.57 37
HRP054T4 4.5 12570 42880 3.97 12.5 3.17 10.8 72.8 12.66 1.57 37
HRP058T4 4.8 13470 45970 4.25 14.0 3.17 10.8 78.2 13.6 1.57 37
HRP060T4 5.0  13860 47280 4.26 15 3.25 11.1 81 14.09 1.57 37
HLP068T4 5.7 15700 53560 5.10 15.0 3.08 10.5 93.1 16.20 1.57 37
HLP072T4 6.0  16810 57350 5.16 15 3.26 11.1 98.7 17.17 1.57 37
HLP075T4 6.3 18040 61550 5.54 16.0 3.26 11-1 102.8 17.88 1.57 37
HLP081T4 6.8 18600 63470 5,66 17 3.28 11,2 110,9 19,30 1,57 37
HCP094T4 7.8 21590 73660 6.63 21.0 3.26 11.1 126.0 21.93 2.66 44
HCP109T4 9.1 25070 85550 7.77 24 3.23 11 148.8 25.89 2.66 44
HCP120T4 10.0 27370 93400 8.47 25.0 3.23 11.0 162.4 28.26 2.66 44
R410A HRH571U4 2.4 7120 24310 2.43 10 2.93 10 27.8 4.84 1.06 31
HRH031U4 26 7530 25710 2.67 10.0 2.82 9.62 29.8 5.19 1.06 31
HRH032U4 2.7 7670 26170 2.75 10 2.79 9.51 30.6 5.33 1.06 31
HRH034U4 2.8 8500 29000 2.90 10.0 2.93 10.0 33.3 5.75 1.06 31
HRH036U4 3 8820 30110 3.13 10 2.82 9.62 34.7 6.04 1.06 31
HRH038U4 3.2 9250 31560 3.35 12.0 2.76 9.41 36.5 6.36 1.06 32
HRH040U4 3.3 15710 34810 3.58 12 2.85 9.72 39.6 6.9 1.33 32
HRH041U4 3.3 10050 34300 3.43 12.5 2.93 10 39.3 6.8 1.57 37
HRH044U4 3.7 1 0571 36940 3.92 13.5 2.76 9.41 42.6 7.41 1.57 37
HRH049U4 4.1 12110 41320 4.04 13.5 2.99 10.22 47.4 8.24 1.57 37
HRH051U4 4.3 12860 43890 4.21 13 3.05 10.42 49.3 5.58 1.57 37
HRH054U4 4.5 13340 45510 4.41 15.0 3.02 10.32 52.1 9.07 1.57 37
HRH056U4 4.7 13830 47200 4.58 15 3.02 1031 54.1 9.42 1.57 37
HLH061T4 5.1 15210 51880 4.89 15.0 3.11 1061 57.8 10.10 1.57 37
HLH068T4  5.7 16880 57610 5.26 19 3.21 1096 64.4 11.21 1.57 37
HLJ072T4 6.0 17840 60900 5.56 19.0 3.21 11.0 68.0 11.82 1.57 37
HLJ075T4  6.3 18600 63490 5.77 18 3.22 11 70.8 12.32 1.57 37
HLJ083T4 6.9 20420 69690 6.28 19.0 3.25 Hl 78.1 13.59 1.57 37
HCJ090T4 7.5 22320 76190 7.19 19 3.11 10.6 86.9 15.11 2.66 44
HCJ105T4 8.8 26100 89090 8.25 25.0 3.16 10.8 101.6 17.68 2.66 44
HCJ120T4 10 29610 157180 9.53 27 3.11 10.6 116.4 20.24 2.66 44

 

Model HP Voltage
MLM019T5LP9 2.5 220-240V-1-50HZ
MLM571T5LP9 3 220-240V-1-50HZ
MLM026T5LP9 3.5 220-240V-1-50HZ
MLM015T4LP9 2 380-415V-3-50Hz&460V-3-60Hz
MLM019T4LP9 2.5 380-415V-3-50Hz&460V-3-60Hz
MLM571T4LP9 3 380-415V-3-50Hz&460V-3-60Hz
MLM026T4LP9 3.5 380-415V-3-50Hz&460V-3-60Hz
MLM030T4LC9 4 380-415V-3-50Hz&460V-3-60Hz
MLM038T4LC9 5 380-415V-3-50Hz&460V-3-60Hz
MLM045T4LC9 6 380-415V-3-50Hz&460V-3-60Hz
MLM048T4LC9 7 380-415V-3-50Hz&460V-3-60Hz
MLM058T4LC9 7.5 380-415V-3-50Hz&460V-3-60Hz
MLM066T4LC9 9 380-415V-3-50Hz&460V-3-60Hz
MLM076T4LC9 10 380-415V-3-50Hz&460V-3-60Hz
*MLM series general-purpose lubricating oil is AB alkyl benzene oil, the refrigerant is R22.
 
Model HP Voltage
MLZ019T5LP9 2.5 220-240V-1-50HZ
MLZ571T5LP9 3 220-240V-1-50HZ
MLZ026T5LP9 3.5 220-240V-1-50HZ
MLZ015T4LP9 2 380-415V-3-50Hz&460V-3-60Hz
MLZ019T4LP9 2.5 380-415V-3-50Hz&460V-3-60Hz
MLZ571T4LP9 3 380-415V-3-50Hz&460V-3-60Hz
MLZ026T4LP9 3.5 380-415V-3-50Hz&460V-3-60Hz
MLZ030T4LC9 4 380-415V-3-50Hz&460V-3-60Hz
MLZ038T4LC9 5 380-415V-3-50Hz&460V-3-60Hz
MLZ045T4LC9 6 380-415V-3-50Hz&460V-3-60Hz
MLZ048T4LC9 7 380-415V-3-50Hz&460V-3-60Hz
MLZ058T4LC9 7.5 380-415V-3-50Hz&460V-3-60Hz
MLZ066T4LC9 9 380-415V-3-50Hz&460V-3-60Hz
MLZ076T4LC9 10 380-415V-3-50Hz&460V-3-60Hz
*MLM series general-purpose lubricating oil is PVE ugly oil, refrigerant R404A/R134A/R507/R22

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.

 

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Installation Type: Movable Type
Lubrication Style: Lubricated
Cylinder Position: Vertical
Model: Hlm075t4
Samples:
US$ 100/Piece
1 Piece(Min.Order)

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air compressor

What is the impact of humidity on compressed air quality?

Humidity can have a significant impact on the quality of compressed air. Compressed air systems often draw in ambient air, which contains moisture in the form of water vapor. When this air is compressed, the moisture becomes concentrated, leading to potential issues in the compressed air. Here’s an overview of the impact of humidity on compressed air quality:

1. Corrosion:

High humidity in compressed air can contribute to corrosion within the compressed air system. The moisture in the air can react with metal surfaces, leading to rust and corrosion in pipes, tanks, valves, and other components. Corrosion not only weakens the structural integrity of the system but also introduces contaminants into the compressed air, compromising its quality and potentially damaging downstream equipment.

2. Contaminant Carryover:

Humidity in compressed air can cause carryover of contaminants. Water droplets formed due to condensation can carry particulates, oil, and other impurities present in the air. These contaminants can then be transported along with the compressed air, leading to fouling of filters, clogging of pipelines, and potential damage to pneumatic tools, machinery, and processes.

3. Decreased Efficiency of Pneumatic Systems:

Excessive moisture in compressed air can reduce the efficiency of pneumatic systems. Water droplets can obstruct or block the flow of air, leading to decreased performance of pneumatic tools and equipment. Moisture can also cause problems in control valves, actuators, and other pneumatic devices, affecting their responsiveness and accuracy.

4. Product Contamination:

In industries where compressed air comes into direct contact with products or processes, high humidity can result in product contamination. Moisture in compressed air can mix with sensitive products, leading to quality issues, spoilage, or even health hazards in industries such as food and beverage, pharmaceuticals, and electronics manufacturing.

5. Increased Maintenance Requirements:

Humidity in compressed air can increase the maintenance requirements of a compressed air system. Moisture can accumulate in filters, separators, and other air treatment components, necessitating frequent replacement or cleaning. Excessive moisture can also lead to the growth of bacteria, fungus, and mold within the system, requiring additional cleaning and maintenance efforts.

6. Adverse Effects on Instrumentation:

Humidity can adversely affect instrumentation and control systems that rely on compressed air. Moisture can disrupt the accuracy and reliability of pressure sensors, flow meters, and other pneumatic instruments, leading to incorrect measurements and control signals.

To mitigate the impact of humidity on compressed air quality, various air treatment equipment is employed, including air dryers, moisture separators, and filters. These devices help remove moisture from the compressed air, ensuring that the air supplied is dry and of high quality for the intended applications.

air compressor

What safety precautions should be taken when working with compressed air?

Working with compressed air requires adherence to certain safety precautions to prevent accidents and ensure the well-being of individuals involved. Here are some important safety measures to consider:

1. Personal Protective Equipment (PPE):

Wear appropriate PPE, including safety goggles or a face shield to protect eyes from flying debris or particles, hearing protection to reduce noise exposure, and gloves to safeguard hands from potential hazards.

2. Compressed Air Storage:

Avoid storing compressed air in containers that are not designed for this purpose, such as soda bottles or makeshift containers. Use approved and properly labeled air storage tanks or cylinders that can handle the pressure and are regularly inspected and maintained.

3. Pressure Regulation:

Ensure that the air pressure is regulated to a safe level suitable for the equipment and tools being used. High-pressure air streams can cause serious injuries, so it is important to follow the manufacturer’s recommendations and never exceed the maximum allowable pressure.

4. Air Hose Inspection:

Regularly inspect air hoses for signs of damage, such as cuts, abrasions, or leaks. Replace damaged hoses immediately to prevent potential accidents or loss of pressure.

5. Air Blowguns:

Exercise caution when using air blowguns. Never direct compressed air towards yourself or others, as it can cause eye injuries, hearing damage, or dislodge particles that may be harmful if inhaled. Always point blowguns away from people or any sensitive equipment or materials.

6. Air Tool Safety:

Follow proper operating procedures for pneumatic tools. Ensure that tools are in good working condition, and inspect them before each use. Use the appropriate accessories, such as safety guards or shields, to prevent accidental contact with moving parts.

7. Air Compressor Maintenance:

Maintain air compressors according to the manufacturer’s guidelines. Regularly check for leaks, clean or replace filters, and drain moisture from the system. Proper maintenance ensures the safe and efficient operation of the compressor.

8. Training and Education:

Provide adequate training and education to individuals working with compressed air. Ensure they understand the potential hazards, safe operating procedures, and emergency protocols. Encourage open communication regarding safety concerns and implement a culture of safety in the workplace.

9. Lockout/Tagout:

When performing maintenance or repairs on compressed air systems, follow lockout/tagout procedures to isolate the equipment from energy sources and prevent accidental startup. This ensures the safety of the individuals working on the system.

10. Proper Ventilation:

Ensure proper ventilation in enclosed areas where compressed air is used. Compressed air can displace oxygen, leading to a potential risk of asphyxiation. Adequate ventilation helps maintain a safe breathing environment.

By adhering to these safety precautions, individuals can minimize the risks associated with working with compressed air and create a safer work environment.

air compressor

Are there portable air compressors available for home use?

Yes, there are portable air compressors specifically designed for home use. These portable models offer convenience, versatility, and ease of use for various tasks around the house. Here are some key points about portable air compressors for home use:

1. Compact and Lightweight: Portable air compressors are typically compact and lightweight, making them easy to transport and store. They are designed with portability in mind, allowing homeowners to move them around the house or take them to different locations as needed.

2. Electric-Powered: Most portable air compressors for home use are electric-powered. They can be plugged into a standard household electrical outlet, eliminating the need for gasoline or other fuel sources. This makes them suitable for indoor use without concerns about emissions or ventilation.

3. Versatile Applications: Portable air compressors can be used for a wide range of home applications. They are commonly used for inflating tires, sports equipment, and inflatable toys. They are also handy for operating pneumatic tools such as nail guns, staplers, and paint sprayers. Additionally, portable air compressors can be used for cleaning tasks, powering airbrushes, and other light-duty tasks around the house.

4. Pressure and Capacity: Portable air compressors for home use typically have lower pressure and capacity ratings compared to larger industrial or commercial models. They are designed to meet the needs of common household tasks rather than heavy-duty applications. The pressure and capacity of these compressors are usually sufficient for most home users.

5. Oil-Free Operation: Many portable air compressors for home use feature oil-free operation. This means they do not require regular oil changes or maintenance, making them more user-friendly and hassle-free for homeowners.

6. Noise Level: Portable air compressors designed for home use often prioritize low noise levels. They are engineered to operate quietly, reducing noise disturbances in residential environments.

7. Cost: Portable air compressors for home use are generally more affordable compared to larger, industrial-grade compressors. They offer a cost-effective solution for homeowners who require occasional or light-duty compressed air applications.

When considering a portable air compressor for home use, it’s important to assess your specific needs and tasks. Determine the required pressure, capacity, and features that align with your intended applications. Additionally, consider factors such as portability, noise level, and budget to choose a suitable model that meets your requirements.

Overall, portable air compressors provide a practical and accessible compressed air solution for homeowners, allowing them to tackle a variety of tasks efficiently and conveniently within a home setting.

China best Danfos Scroll Parts Air Cooler Refrigeration Compressor Danfos 50Hz R22 Single Hlm075t4 in Stock   manufacturer China best Danfos Scroll Parts Air Cooler Refrigeration Compressor Danfos 50Hz R22 Single Hlm075t4 in Stock   manufacturer
editor by CX 2024-02-22

China best R22 R407 Original Air Cooler CHINAMFG Refrigeration Compressor Rh174 with Best Sales

Product Description

R22 R407 Original Air cooler CHINAMFG Refrigeration Compressor RH174

Mitsubishi Rotary Compressor all models:
KH086,KH091,KH094,KH104,KH111,KH117,KH122,KH127
1. Fast delivery
2. Low price in CN

 

Mitsubishi Refrigeration Compressor

Specifications

 

1.High reliability, long time working 
2.Lower noise, smooth running 
3.High efficient, energy saving 
4.Suitable for R22,R407C,R410A

 

Technical data:

Series Model Ratedcapacity (KW) Refrigeration Capacity electric source Weight
(kg)
W Kcal/h Btu/h
RH
series
RH135 0.65 2,230/2,740 1,250/1,500 7,620/9,360 R/W/S/N/V/T 13.1
RH145 0.70 2,440/2,930 1,325/1,590 8,330/10,000 R/V 13.1
RH154 0.75 2,600/3,120 1,390/1,660 8,890/10,630 R/W/S/N/V/T 13.1
RH165 0.80 2,740/3,310 1,520/1,825 9,360/11,310 R/V 13.1
RH174 0.80 2,930/3,490 1,625/1,945 10,000/11,900 V 13.1
RH185 0.85 3,170/3,770 1,720/2,050 10,830/12,860 R/W/S/N/V/T 14.5
RH197 0.90 3,370/4,571 1,750/2,130 11,510/13,690 R/W/S/N/V/T 14.5
RH207 1.00 3,550/4,190 1,860/2,230 12,100/14,280 S/N/V/T 14.5
RH231 1.10 3,950/4,690 3,400/4,030 13,490/15,990 S/N/V/T 14.5
RH245 1.20 4,220/5,040 3,630/4,330 14,400/17,180 S/N/V/T 14.5
RH277 1.30 3,730/5,640 4,070/4,850 16,150/9,240 S/N/V/T 15.1

Series Model Ratedcapacity (KW) Refrigeration Capacity electric source Weight
(kg)
W Kcal/h Btu/h
KH
series
KH086 0.40 1,455/1,745 1,250/1,500 4,960/5,950 R/W/S/V 8.9
KH091 0.45 1,540/1,850 1,325/1,590 5,260/6,310 R/V 8.9
KH094 0.45 1,615/1,930 1,390/1,660 5,520/6,590 R/V 9.2
KH104 0.50 1,765/2,120 1,520/1,825 6,030/7,240 R/S/V 9.2
KH111 0.55 1,890/2,260 1,625/1,945 6,450/7,720 R/S/V 9.2
KH117 0.55 2,000/2,385 1,720/2,050 6,820/8,134 R/S/V 9.2
KH122 0.60 2,035/2,475 1,750/2,130 6,940/8,450 R/W/S/V/T 9.2
KH127 060. 2,165/2,595 1,860/2,230 7,380/8,850 R/S/V/T 9.2

 

 

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Lubrication Style: Lubricated
Cooling System: Air Cooling
Cylinder Arrangement: Balanced Opposed Arrangement
Cylinder Position: Angular
Structure Type: Closed Type
Compress Level: Multistage
Customization:
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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

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 best R22 R407 Original Air Cooler CHINAMFG Refrigeration Compressor Rh174   with Best SalesChina best R22 R407 Original Air Cooler CHINAMFG Refrigeration Compressor Rh174   with Best Sales
editor by CX 2024-02-01

China high quality R22 Rotary Compressor Highly Compressor Price SL193CV Air Condition Compressor manufacturer

Product Description

Series Typical Model Displ. Cooling Capaciry Power COP Capacitor Compressor Hight Discharge Pipe ID Sudbon Pipe ID
cc W Btu/h W w/w uF/V mm mm mm
ZA ZAS240F-MV 24.0  7200 24566 2325 3.10  60/400 310 9.8 12.9
LA LAS75F-DJ 7.5  2120 7233 725 2.92  30/370 278 8.2 9.8
LAS82F-DJ 8.2  2360 8050 801 2.95  30/370 278 8.2 9.8
LAS86F-DJ 8.6  2425 8274.1 828 2.93  30/370 278 8.2 9.8
LAS89F-DJ 9.8  2900 9895 930 3.12  35/370 278 8.2 9.8
LAS108F-FJ 10.8  3080 10509 1048 2.94  35/370 292 8.2 12.9
LAS118F-FJ 11.8  3390 11567 1125 3.01  35/370 278 8.2 12.9
GB GBS210FD-MR 20.8  6160 21018 2035 3.03  50/370 322 9.8 12.9

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Usage: for Air Conditioner
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air compressor

How are air compressors utilized in the aerospace industry?

Air compressors play a crucial role in various applications within the aerospace industry. They are utilized for a wide range of tasks that require compressed air or gas. Here are some key uses of air compressors in the aerospace industry:

1. Aircraft Systems:

Air compressors are used in aircraft systems to provide compressed air for various functions. They supply compressed air for pneumatic systems, such as landing gear operation, braking systems, wing flap control, and flight control surfaces. Compressed air is also utilized for starting aircraft engines and for cabin pressurization and air conditioning systems.

2. Ground Support Equipment:

Air compressors are employed in ground support equipment used in the aerospace industry. They provide compressed air for tasks such as inflating aircraft tires, operating pneumatic tools for maintenance and repair, and powering air-driven systems for fueling, lubrication, and hydraulic operations.

3. Component Testing:

Air compressors are utilized in component testing within the aerospace industry. They supply compressed air for testing and calibrating various aircraft components, such as valves, actuators, pressure sensors, pneumatic switches, and control systems. Compressed air is used to simulate operating conditions and evaluate the performance and reliability of these components.

4. Airborne Systems:

In certain aircraft, air compressors are employed for specific airborne systems. For example, in military aircraft, air compressors are used for air-to-air refueling systems, where compressed air is utilized to transfer fuel between aircraft in mid-air. Compressed air is also employed in aircraft de-icing systems, where it is used to inflate inflatable de-icing boots on the wing surfaces to remove ice accumulation during flight.

5. Environmental Control Systems:

Air compressors play a critical role in the environmental control systems of aircraft. They supply compressed air for air conditioning, ventilation, and pressurization systems, ensuring a comfortable and controlled environment inside the aircraft cabin. Compressed air is used to cool and circulate air, maintain desired cabin pressure, and control humidity levels.

6. Engine Testing:

In the aerospace industry, air compressors are utilized for engine testing purposes. They provide compressed air for engine test cells, where aircraft engines are tested for performance, efficiency, and durability. Compressed air is used to simulate different operating conditions and loads on the engine, allowing engineers to assess its performance and make necessary adjustments or improvements.

7. Oxygen Systems:

In aircraft, air compressors are involved in the production of medical-grade oxygen for onboard oxygen systems. Compressed air is passed through molecular sieve beds or other oxygen concentrator systems to separate oxygen from other components of air. The generated oxygen is then supplied to the onboard oxygen systems, ensuring a sufficient and continuous supply of breathable oxygen for passengers and crew at high altitudes.

It is important to note that air compressors used in the aerospace industry must meet stringent quality and safety standards. They need to be reliable, efficient, and capable of operating under demanding conditions to ensure the safety and performance of aircraft systems.

air compressor

Are there differences between single-stage and two-stage air compressors?

Yes, there are differences between single-stage and two-stage air compressors. Here’s an in-depth explanation of their distinctions:

Compression Stages:

The primary difference between single-stage and two-stage air compressors lies in the number of compression stages they have. A single-stage compressor has only one compression stage, while a two-stage compressor has two sequential compression stages.

Compression Process:

In a single-stage compressor, the entire compression process occurs in a single cylinder. The air is drawn into the cylinder, compressed in a single stroke, and then discharged. On the other hand, a two-stage compressor utilizes two cylinders or chambers. In the first stage, air is compressed to an intermediate pressure in the first cylinder. Then, the partially compressed air is sent to the second cylinder where it undergoes further compression to reach the desired final pressure.

Pressure Output:

The number of compression stages directly affects the pressure output of the air compressor. Single-stage compressors typically provide lower maximum pressure levels compared to two-stage compressors. Single-stage compressors are suitable for applications that require moderate to low air pressure, while two-stage compressors are capable of delivering higher pressures, making them suitable for demanding applications that require greater air pressure.

Efficiency:

Two-stage compressors generally offer higher efficiency compared to single-stage compressors. The two-stage compression process allows for better heat dissipation between stages, reducing the chances of overheating and improving overall efficiency. Additionally, the two-stage design allows the compressor to achieve higher compression ratios while minimizing the work done by each stage, resulting in improved energy efficiency.

Intercooling:

Intercooling is a feature specific to two-stage compressors. Intercoolers are heat exchangers placed between the first and second compression stages. They cool down the partially compressed air before it enters the second stage, reducing the temperature and improving compression efficiency. The intercooling process helps to minimize heat buildup and reduces the potential for moisture condensation within the compressor system.

Applications:

The choice between a single-stage and two-stage compressor depends on the intended application. Single-stage compressors are commonly used for light-duty applications such as powering pneumatic tools, small-scale workshops, and DIY projects. Two-stage compressors are more suitable for heavy-duty applications that require higher pressures, such as industrial manufacturing, automotive service, and large-scale construction.

It is important to consider the specific requirements of the application, including required pressure levels, duty cycle, and anticipated air demand, when selecting between a single-stage and two-stage air compressor.

In summary, the main differences between single-stage and two-stage air compressors lie in the number of compression stages, pressure output, efficiency, intercooling capability, and application suitability.

air compressor

Can you explain the basics of air compressor terminology?

Understanding the basic terminology related to air compressors can help in better comprehension of their operation and discussions related to them. Here are some essential terms related to air compressors:

1. CFM (Cubic Feet per Minute): CFM is a unit of measurement that denotes the volumetric flow rate of compressed air. It indicates the amount of air a compressor can deliver within a minute and is a crucial factor in determining the compressor’s capacity.

2. PSI (Pounds per Square Inch): PSI is a unit of measurement used to quantify pressure. It represents the force exerted by the compressed air on a specific area. PSI is a vital specification for understanding the pressure capabilities of an air compressor and determining its suitability for various applications.

3. Duty Cycle: Duty cycle refers to the percentage of time an air compressor can operate in a given time period. It indicates the compressor’s ability to handle continuous operation without overheating or experiencing performance issues. For instance, a compressor with a 50% duty cycle can run for half the time in a given hour or cycle.

4. Horsepower (HP): Horsepower is a unit used to measure the power output of a compressor motor. It indicates the motor’s capacity to drive the compressor pump and is often used as a reference for comparing different compressor models.

5. Receiver Tank: The receiver tank, also known as an air tank, is a storage vessel that holds the compressed air delivered by the compressor. It helps in stabilizing pressure fluctuations, allowing for a more consistent supply of compressed air during peak demand periods.

6. Single-Stage vs. Two-Stage: These terms refer to the number of compression stages in a reciprocating air compressor. In a single-stage compressor, air is compressed in a single stroke of the piston, while in a two-stage compressor, it undergoes initial compression in one stage and further compression in a second stage, resulting in higher pressures.

7. Oil-Free vs. Oil-Lubricated: These terms describe the lubrication method used in air compressors. Oil-free compressors have internal components that do not require oil lubrication, making them suitable for applications where oil contamination is a concern. Oil-lubricated compressors use oil for lubrication, enhancing durability and performance but requiring regular oil changes and maintenance.

8. Pressure Switch: A pressure switch is an electrical component that automatically starts and stops the compressor motor based on the pre-set pressure levels. It helps maintain the desired pressure range in the receiver tank and protects the compressor from over-pressurization.

9. Regulator: A regulator is a device used to control and adjust the output pressure of the compressed air. It allows users to set the desired pressure level for specific applications and ensures a consistent and safe supply of compressed air.

These are some of the fundamental terms associated with air compressors. Familiarizing yourself with these terms will aid in understanding and effectively communicating about air compressors and their functionality.

China high quality R22 Rotary Compressor Highly Compressor Price SL193CV Air Condition Compressor   manufacturer China high quality R22 Rotary Compressor Highly Compressor Price SL193CV Air Condition Compressor   manufacturer
editor by CX 2023-12-16

China wholesaler 30000BTU R22 50Hz 220-240V CHINAMFG Brand Rotary Air Condition Hermetic Compressor wholesaler

Product Description

Brief History of ZheJiang Tili Refrigeration Equipment Co.,Ltd

1991 Tili Group founded
1997 Authorized to be sole agent of Panasonic
rotary compressor in china
1999 Authorized to be general agent of Daikin scroll compressor
2000 Authorized to be agent of LG rotary compressor
2003 Authorized to be general agent of CHINAMFG Refrigerant in China and agent of CHINAMFG Automotive A/C compressor
2571 Authorized to be agent of CHINAMFG Performer compressor

Product Range
Characteristics:
1. Strong load capacity
2. High efficiency & reliability
3. Reliable starting performance
4. Low noise

Refrigerant: R22
Voltage: 220V-240V
Type: Rotary
Frequency: 50Hz
Cooling Capacity: 29650BTU
Transport Package: Standard Export Packing by Pallet
Samples:
US$ 108/Piece
1 Piece(Min.Order)

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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 are the environmental considerations when using air compressors?

When using air compressors, there are several environmental considerations to keep in mind. Here’s an in-depth look at some of the key factors:

Energy Efficiency:

Energy efficiency is a crucial environmental consideration when using air compressors. Compressing air requires a significant amount of energy, and inefficient compressors can consume excessive power, leading to higher energy consumption and increased greenhouse gas emissions. It is important to choose energy-efficient air compressors that incorporate features such as Variable Speed Drive (VSD) technology and efficient motor design, as they can help minimize energy waste and reduce the carbon footprint.

Air Leakage:

Air leakage is a common issue in compressed air systems and can contribute to energy waste and environmental impact. Leaks in the system result in the continuous release of compressed air, requiring the compressor to work harder and consume more energy to maintain the desired pressure. Regular inspection and maintenance of the compressed air system to detect and repair leaks can help reduce air loss and improve overall energy efficiency.

Noise Pollution:

Air compressors can generate significant noise levels during operation, which can contribute to noise pollution. Prolonged exposure to high noise levels can have detrimental effects on human health and well-being and can also impact the surrounding environment and wildlife. It is important to consider noise reduction measures such as sound insulation, proper equipment placement, and using quieter compressor models to mitigate the impact of noise pollution.

Emissions:

While air compressors do not directly emit pollutants, the electricity or fuel used to power them can have an environmental impact. If the electricity is generated from fossil fuels, the associated emissions from power plants contribute to air pollution and greenhouse gas emissions. Choosing energy sources with lower emissions, such as renewable energy, can help reduce the environmental impact of operating air compressors.

Proper Waste Management:

Proper waste management is essential when using air compressors. This includes the appropriate disposal of compressor lubricants, filters, and other maintenance-related materials. It is important to follow local regulations and guidelines for waste disposal to prevent contamination of soil, water, or air and minimize the environmental impact.

Sustainable Practices:

Adopting sustainable practices can further reduce the environmental impact of using air compressors. This can include implementing preventive maintenance programs to optimize performance, reducing idle time, and promoting responsible use of compressed air by avoiding overpressurization and optimizing system design.

By considering these environmental factors and taking appropriate measures, it is possible to minimize the environmental impact associated with the use of air compressors. Choosing energy-efficient models, addressing air leaks, managing waste properly, and adopting sustainable practices can contribute to a more environmentally friendly operation.

air compressor

What are the different types of air compressors?

There are several different types of air compressors, each with its own unique design and operating principle. Here’s an overview of the most commonly used types:

1. Reciprocating Air Compressors: Reciprocating air compressors, also known as piston compressors, use one or more pistons driven by a crankshaft to compress air. They operate by drawing air into a cylinder, compressing it with the piston’s up-and-down motion, and discharging the compressed air into a storage tank. Reciprocating compressors are known for their high pressure capabilities and are commonly used in industrial applications.

2. Rotary Screw Air Compressors: Rotary screw air compressors utilize two interlocking screws to compress air. As the male and female screws rotate, the air is trapped between them and gradually compressed as it moves along the screw threads. These compressors are known for their continuous duty cycle, high efficiency, and quiet operation. They are widely used in industrial, commercial, and automotive applications.

3. Centrifugal Air Compressors: Centrifugal air compressors rely on the principle of centrifugal force to compress air. They use a high-speed impeller to accelerate the incoming air and then convert the kinetic energy into pressure energy. Centrifugal compressors are commonly used in large-scale industrial applications that require high volumes of compressed air.

4. Rotary Vane Air Compressors: Rotary vane air compressors employ a rotor with sliding vanes that compress the air. As the rotor rotates, the vanes slide in and out of the rotor, creating compression chambers. Air is drawn in, trapped, and compressed as the vanes move. These compressors are compact, reliable, and suitable for small to medium-sized applications.

5. Axial Flow Air Compressors: Axial flow air compressors are primarily used in specialized applications such as aircraft engines and gas turbines. They utilize a series of rotating and stationary blades to compress air in a continuous flow. Axial flow compressors are known for their high flow rates and are designed for applications that require large volumes of compressed air.

6. Scroll Air Compressors: Scroll air compressors consist of two interlocking spirals or scrolls that compress the air. One spiral remains stationary while the other orbits around it, creating a series of expanding and contracting pockets that compress the air. Scroll compressors are compact, reliable, and commonly used in applications where low noise and oil-free air are required, such as medical and dental equipment.

These are just a few examples of the different types of air compressors available. Each type has its own advantages, capabilities, and ideal applications. The choice of air compressor depends on factors such as required pressure, flow rate, duty cycle, noise level, oil-free operation, and specific application requirements.

China wholesaler 30000BTU R22 50Hz 220-240V CHINAMFG Brand Rotary Air Condition Hermetic Compressor   wholesaler China wholesaler 30000BTU R22 50Hz 220-240V CHINAMFG Brand Rotary Air Condition Hermetic Compressor   wholesaler
editor by CX 2023-11-14