China supplier High Efficiency 185kw Printing Dry Oil Free Screw Air Compressor for Pharmaceutical Industry air compressor oil

Product Description

High Efficiency 185kw Printing Dry Oil Free Screw Air Compressor for Pharmaceutical Industry

Technical Parameters Of PM Variable speed screw air compressor:
 

Model Work pressure Capacity Power Noise Inlet and outlet diameters of cooling water Water inlet & outlet
T/H
Lubricating water
L
Dimensions Weight Air outlet diameter

 

WZS-06PMA 0.8 0.3~0.78 5.5 57 3/4″ 1.5 10 800x800x1100 460 3/4″
1.0 0.2~0.65
WZS-08PMA 0.8 0.35~1.17 7.5 57 3/4″ 2 10 800x800x1100 510 3/4″
1.0 0.3~1.05
1.25 0.24~0.81
WZS-11PMA 0.8 0.54~1.72 11 60 1″ 2.5 26 1200x800x1300 620 3/4″
1.0 0.45~1.42
1.25 0.35~1.10
WZS-15PMA 0.8 0.75~2.43 15 60 1″ 3.5 26 1200x800x1300 670 1″
1.0 0.65~2.17
1.25 0.6~1.85
WZS-18PMA 0.8 0.9~3.13 18.5 63 1″ 4 30 1400x1000x1520 730 1″
1.0 0.9~2.82
1.25 0.6~2.05
WZS-22PMA 0.8 1.1~3.62 22 63 1 1/2″ 5 30 1400x1000x1520 780 1″
1.0 0.97~3.21
1.25 0.85~2.78
WZS-30PMA 0.8 1.55~5.12 30 66 1 1/2″ 7 40 1500x1150x1500 1150 1 1/2″
1.0 1.255~4.43
1.25 1.1~3.63
WZS-37PMA 0.8 1.91~6.30 37 66 1 1/2″ 9 40 1500x1150x1500 1200 1 1/2″
1.0 1.60~5.33
1.25 1.42~4.77
WZS-45PMA 0.8 2.50~8.30 45 68 1 1/2″ 10 90 1800x1300x1750 1490 2″
1.0 1.91~6.30
1.25 1.70~5.56
WZS-55PMA 0.8 3.0~9.76 55 69 1 1/2″ 12 100 1800x1300x1750 1570 2″
1.0 2.60~8.55
1.25 2.30~7.67
WZS-75PMA 0.8 3.95~13.00 75 72 1 1/2″ 18 100 1800x1300x1750 1750 2″
1.0 3.40~11.50
1.25 3.0~9.70
WZS-90PMA 0.8 5.0~16.60 90 73 1 1/2″ 20 120 2200x1550x1800 2450 2 1/2″
1.0 4.30~14.66
1.25 3.72~12.60
WZS-110PMA 0.8 6.0~19.97 110 77 1 1/2″ 24 120 2200x1550x1800 2580 2 1/2″
1.0 5.0~16.66
1.25 4.65~15.56
WZS-132PMA 0.8 6.75~22.52 132 77 2″ 30 120 2200x1550x1800 2700 2 1/2″
1.0 6.0~19.97
1.25 5.07~16.90
WZS-160PMA 0.8 8.5~28.11 160 79 3″ 35 160 3000x1800x2100 3900 3″
1.0 706~25.45
1.25 6.7~22.52
WZS-185PMA 0.8 10~33.97 185 79 3″ 38 160 3000x1800x2100 4050 3″
1.0 8.72~29.00
1.25 7075~25.210
WZS-200PMA 0.8 11.2~36.75 200 80 4″ 42 200 3100x1850x2100 4200 4″
1.0 9.68~32.78
1.25 9.2~29.24
WZS-220PMA 0.8 12.2~39.67 220 80 4″ 47 200 3100x1850x2100 4400 4″
1.0 11.2~36.75
1.25 9.0~29.63
WZS-250PMA 0.8 13.5~44.78 250 80 4″ 53 200 3100x1850x2100 4800 4″
1.0 12.3~39.67
1.25 10.2~33.97

 

Before quotation:
1.Before quoting, what should users offer?
1).Discharge pressure (Bar, Mpa or Psi)
2).Air discharge/Air flow/Air capacity (m3/min or CFM)
3).Power supply (220/380V, 50/60Hz, 3Phase)

2.If I don’t know the pressure and air flow, what should I do?
1).Take the picture of nameplate, we will advise the suitable air compressor to you.
2).Tell us what industry you are, we can advise the suitable 1 (so as to air tank / air dryer / air filters).
 

High Efficiency PM Motor and Energy Saving
*With the high-performance permanent magnet material, PM motor won’t lose magnetism even under 120°c and can run for more than 15 years.
*No motor bearing: permanent magnet rotors is installed directly on the stretch out shaft of Male rotor. This structure doesn’t have the bearing and eliminates the motor bearing fault. 
*Comparing to normal variable speed motor, the permanent magnet synchronous motor performs with even better energy efficiency. Especially in the low-speed condition, it can still maintain a high motor efficiency.

SHIPPING
Delivery: time 5-25 working days after payment receipt confirmed(based on actual quantity)
packing:standard export packing. or customized packing as your
Professional: goods shipping forwarder.

FAQ
Q: OEM/ODM, or customers logo printed is available?
Yes, OEM/ODM, customers logo is welcomed.

Q:  Delivery date?
Usually 5-25 workdays after receiving deposit, specific delivery date based on order quantity

Q: what’s your payment terms?
Regularly doing 30% deposit and 70% balance by T/T, Western Union, Paypal, other payment terms also can be discussed based on our cooperation.

Q: How to control your quality?
We have professional QC team, control the quality during the mass production and inspect completely goods before shipping.

Q:  If we don’t have shipping forwarder in China, would you do this for us?
We can offer you best shipping line to ensure you can get the goods timely at best price.

Q: come to China before, can you be my guide in China?
We are happy to provide you orservice, such as booking ticket, pick up at the airport, booking hotel, accompany visiting market or factory

 

After-sales Service: Video Technical Support
Warranty: 1 Year
Lubrication Style: Oil-free
Cooling System: Air Cooling
Power Source: AC Power
Cylinder Position: Vertical
Customization:
Available

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air compressor

Can Water-Lubricated Compressors Be Used in High-Pressure Applications?

Water-lubricated compressors can be used in high-pressure applications, but there are certain considerations and limitations to keep in mind. Here’s a detailed explanation:

Water-lubricated compressors are typically designed for lower to medium-pressure ranges. They are commonly used in applications where the required discharge pressure does not exceed a certain threshold, typically up to a few hundred pounds per square inch (psi). However, there are specialized water-lubricated compressors available that can handle higher pressures, depending on the specific design and construction.

The ability of a water-lubricated compressor to operate at high pressures depends on several factors:

  1. Compressor Design: The design and construction of the compressor play a crucial role in determining its maximum pressure rating. Compressors designed for high-pressure applications need to have robust components, such as reinforced casings, high-strength materials, and proper sealing mechanisms to withstand the elevated pressures. Special attention should be given to the design of the water-lubricated bearing system to ensure it can handle the increased loads and pressures.
  2. Water Supply and Cooling: High-pressure compressors generate more heat during the compression process, requiring efficient cooling mechanisms to maintain safe operating temperatures. Sufficient water supply and cooling capacity must be available to handle the increased heat load. Adequate flow rates, temperature control, and cooling methods, such as water jackets or external cooling systems, may be necessary to prevent overheating and ensure proper lubrication and cooling of the compressor components.
  3. Water Quality: The quality of the water used for lubrication becomes even more critical in high-pressure applications. Any impurities, contaminants, or minerals present in the water can cause increased wear, corrosion, or blockages, jeopardizing the compressor’s performance and reliability. Water treatment or filtration systems may be required to maintain the desired water quality and prevent damage to the compressor.
  4. Sealing and Leakage Control: As the pressure increases, it becomes more challenging to maintain effective sealing and prevent leakage in the compressor system. Proper sealing mechanisms, such as high-quality seals and gaskets, are essential to ensure minimal leakage and maintain the required pressure levels. Adequate monitoring and maintenance of the sealing components are necessary to prevent energy losses and ensure the compressor’s efficiency.

It’s worth noting that for extremely high-pressure applications, water-lubricated compressors may not be the most suitable choice. In such cases, alternative lubrication methods, such as oil or specialized lubricants, are often preferred to handle the extreme pressures and provide adequate lubrication and cooling.

When considering the use of water-lubricated compressors in high-pressure applications, it is crucial to consult with the compressor manufacturer or a qualified engineer to ensure that the chosen compressor model is specifically designed and rated for the desired pressure range. Proper installation, maintenance, and adherence to the manufacturer’s guidelines are essential to ensure the safe and efficient operation of the compressor in high-pressure conditions.

air compressor

How Do You Troubleshoot Common Problems with Water-Lubrication Systems?

When encountering common problems with water-lubrication systems, it is essential to follow a systematic troubleshooting approach. Here’s a detailed explanation of the steps involved in troubleshooting common issues with water-lubrication systems:

Step 1: Identify the Problem:

The first step is to identify the specific problem or symptom that is affecting the water-lubrication system. Common problems may include inadequate lubrication, water leaks, abnormal noises, or reduced system performance. Understanding the specific issue will help in determining the appropriate troubleshooting steps.

Step 2: Check Water Supply:

Verify that there is a proper water supply to the system. Ensure that the water source is connected and flowing adequately. Check for any obstructions or restrictions in the water lines that may be affecting the water flow to the lubrication system.

Step 3: Inspect Water Filters and Strainers:

Water filters and strainers are used in water-lubrication systems to remove debris and impurities from the water. Inspect these filters and strainers for clogs or blockages that may be hindering the water flow. Clean or replace the filters as necessary to ensure proper water filtration.

Step 4: Verify Water Pressure:

Check the water pressure within the system to ensure it falls within the recommended range. Low water pressure can result in inadequate lubrication, while high water pressure can cause leaks or damage to the system. Use a pressure gauge to measure the water pressure and adjust it if necessary according to the manufacturer’s guidelines.

Step 5: Examine Water-Lubrication Components:

Closely inspect the various components of the water-lubrication system, including the water pump, distribution lines, lubrication points, and seals. Look for signs of wear, damage, or misalignment that may be contributing to the problem. Tighten loose connections and replace any damaged or worn-out components as needed.

Step 6: Check for Air in the System:

Air trapped within the water-lubrication system can affect its performance. Bleed the system to remove any trapped air. Follow the manufacturer’s instructions for bleeding air from the system, which typically involves opening specific valves or vents until a steady flow of water is achieved.

Step 7: Inspect Cooling Mechanisms:

Water-lubrication systems often incorporate cooling mechanisms, such as heat exchangers or radiators, to dissipate excess heat. Inspect these cooling components for blockages, corrosion, or leaks that may be compromising their effectiveness. Clean or repair the cooling mechanisms as necessary to ensure proper heat dissipation.

Step 8: Consult Manufacturer Documentation:

If the troubleshooting steps above do not resolve the problem, refer to the manufacturer’s documentation, such as the user manual or technical specifications. These resources may provide specific troubleshooting guidelines, diagnostics, or additional maintenance procedures for the water-lubrication system.

Step 9: Seek Professional Assistance:

If the problem persists or if the troubleshooting steps are beyond your expertise, it is advisable to seek professional assistance. Contact the manufacturer’s technical support or consult a qualified technician with experience in water-lubrication systems. They can provide expert guidance and assistance in resolving complex issues.

By following these troubleshooting steps, you can effectively identify and address common problems encountered in water-lubrication systems, ensuring optimal performance and reliability.

air compressor

How does a water lubrication system work in air compressors?

A water lubrication system in air compressors is designed to provide lubrication and cooling to the internal components of the compressor using water as the lubricant. This system offers an alternative to traditional oil lubrication systems and has specific advantages in certain applications. Here’s a detailed explanation of how a water lubrication system works in air compressors:

1. Water Injection:

In a water lubrication system, a controlled amount of water is injected into the compression chamber of the air compressor. This can be achieved through various methods, such as direct injection or atomization of water droplets.

2. Lubrication:

As the compressed air is generated, the injected water serves as a lubricant for the internal components of the compressor. The water forms a thin film on the surfaces, reducing friction and wear between the moving parts. This lubrication helps to improve the efficiency and lifespan of the compressor.

3. Cooling:

The water injected into the compression chamber also acts as a cooling medium. As the air is compressed, heat is generated, and the injected water absorbs some of this heat. The water carries away the heat, preventing excessive temperature rise and maintaining optimal operating conditions for the compressor.

4. Separation and Filtration:

After serving its lubrication and cooling purposes, the water needs to be separated from the compressed air. The compressed air and water mixture pass through a separator or filtration system, which separates the water from the compressed air. This can involve mechanisms such as centrifugal force, gravity separation, or filtration media.

5. Water Treatment:

In water lubrication systems, proper water treatment is essential to maintain the quality and performance of the system. Water filtration and purification processes are employed to remove impurities, contaminants, and any solid particles present in the water. This ensures that the injected water is clean and free from any substances that could potentially harm the compressor or the downstream air system.

6. Recirculation or Discharge:

Depending on the specific design of the water lubrication system, the separated water can be recirculated back into the system for reuse or discharged from the compressor. Recirculation systems involve the treatment and filtration of the water before reintroducing it into the compression chamber. Discharge systems, on the other hand, may involve further treatment or disposal of the water in an environmentally responsible manner.

By utilizing a water lubrication system, air compressors can benefit from reduced oil consumption, improved air quality, and enhanced energy efficiency. These systems are commonly employed in industries where oil contamination must be avoided, such as food processing, pharmaceutical manufacturing, and electronics production.

China supplier High Efficiency 185kw Printing Dry Oil Free Screw Air Compressor for Pharmaceutical Industry   air compressor oilChina supplier High Efficiency 185kw Printing Dry Oil Free Screw Air Compressor for Pharmaceutical Industry   air compressor oil
editor by CX 2023-12-15