Product Description
Product Description
1.Atals-Copco Air-End
Atlas-Copco Group 149years air-end research & development experience.
2.High Efficiency & Save Energy
High efficiency & energy saving intake valve,keep in lower unloading pressure and avoid large energy consumption when
3.Easy Installation & Operation
Compressor is filled with inbrication oil before delivering. You can operate it after installing and power on.
4.Low noise & low vibration
Atlas-copco air-end, low noise & vibration.
5.Reliability & Safety
Reliability bigger cooler, lower operating temperature.
Detailed Photos
Product Parameters
| LSW-8A PM-8 | 8 | 116 | 0.5~1.1 | 10 | 7.5 | 510 | Air Cooled |
Belt Driven | 57±2 | G3/4” | — | — | 800*800*1200 |
| LSW-8A PM-10 | 10 | 145 | 0.4~0.9 | ||||||||||
| LSW-11A PM-8 | 8 | 116 | 0.7~1.7 | 15 | 11 | 620 | Air Cooled |
Direct Driven | 60±2 | G3/4” | — | — | 1200*855*1335 |
| LSW-11A PM-10 | 10 | 145 | 0.6~1.4 | ||||||||||
| LSW-15A PM-8 | 8 | 116 | 1.0~2.3 | 20 | 15 | 670 | Air Cooled |
Direct Driven | 60±2 | G3/4” | — | — | 1200*855*1335 |
| LSW-15A PM-10 | 10 | 145 | 0.9~2.0 | ||||||||||
| LSW-18.5A PM-8 | 8 | 116 | 1.2~3.0 | 25 | 18.5 | 730 | Air Cooled |
Direct Driven | 63±2 | G1” | — | — | 1400*1571*1340 |
| LSW-18.5A PM-10 | 10 | 145 | 1.0~2.6 | ||||||||||
| LSW-22A PM-8 | 8 | 116 | 1.5~3.6 | 30 | 22 | 780 | Air Cooled |
Direct Driven | 63±2 | G1” | — | — | 1400*1571*1340 |
| LSW-22A PM-10 | 10 | 145 | 1.3~3.0 | ||||||||||
| LSW-30A PM -8 | 8 | 116 | 2.1~5.1 | 40 | 30 | 1150 | Air Cooled |
Direct Driven | 66±2 | G1-1/4” | — | — | 1650*1180*1505 |
| LSW-30A PM-10 | 10 | 145 | 1.8~4.3 | ||||||||||
| LSW-37A PM-8 | 8 | 116 | 2.6~6.4 | 50 | 37 | 1200 | Air Cooled |
Direct Driven | 66±2 | G1-1/4” | — | — | 1650*1180*1505 |
| LSW-37A PM-10 | 10 | 145 | 2.2~5.4 | ||||||||||
| LSW-45W PM-8 | 8 | 116 | 3.3~8.2 | 60 | 45 | 1490 | Water Cooled |
Direct Driven | 68±2 | G2” | G1-1/2” | 10 | 1800*1360*1670 |
| LSW-45W PM-10 | 10 | 145 | 2.8~7.0 | ||||||||||
| LSW-55W PM-8 | 8 | 116 | 4.0~10 | 75 | 55 | 1570 | Water Cooled |
Direct Driven | 69±2 | G2” | G1-1/2” | 12 | 1800*1360*1670 |
| LSW-55W PM-10 | 10 | 145 | 3.4~8.5 | ||||||||||
| LSW-75W PM-8 | 8 | 116 | 5.2~13.0 | 75 | 55 | 1750 | Water Cooled |
Direct Driven | 69±2 | G2” | G1-1/2” | 18 | 1800*1360*1670 |
| LSW-75W PM-10 | 10 | 145 | 4.4~11.1 | ||||||||||
| LSW-90W PM-8 | 8 | 116 | 6.9~17.2 | 120 | 90 | 2450 | Water Cooled |
Direct Driven | 73±2 | G2-1/2” | G1-1/2” | 20 | 2200*1550*1800 |
| LSW-90W PM-10 | 10 | 145 | 5.9~14.6 | ||||||||||
| LSW-110W PM-8 | 8 | 116 | 8.2~20.3 | 150 | 110 | 2580 | Water Cooled |
Direct Driven | 75±2 | G2-1/2” | G2” | 24 | 2200*1550*1800 |
| LSW-110W PM-10 | 10 | 145 | 7.0~17.3 | ||||||||||
| LSW-132W PM-8 | 8 | 116 | 9.7~24.1 | 180 | 132 | 2700 | Water Cooled |
Direct Driven | 75±2 | G2-1/2” | G2” | 30 | 2700*1550*1800 |
| LSW-132W PM-10 | 10 | 145 | 8.2~20.5 | ||||||||||
| LSW-160W PM-8 | 8 | 116 | 11.3~28.2 | 210 | 160 | 3900 | Water Cooled |
Direct Driven | 77±2 | G3” | G3” | 35 | 3000*1800*2100 |
| LSW-160W PM-10 | 10 | 145 | 9.6~24.0 | ||||||||||
| LSW-185W PM-8 | 8 | 116 | 12.9~32.1 | 240 | 185 | 4050 | Water Cooled |
Direct Driven | 77±2 | G3” | G3” | 38 | 3000*1800*2100 |
| LSV180W PM-10 | 10 | 145 | 11.0~27.3 | ||||||||||
| LSW-200W PM-8 | 8 | 116 | 13.8~34.5 | 270 | 200 | 4200 | Water Cooled |
Direct Driven | 78±2 | G4” | G4” | 42 | 3000*1800*2100 |
| LSW-200W PM-10 | 10 | 145 | 11.7~29.3 | ||||||||||
| LSW-220W PM-8 | 8 | 116 | 15.5~38.6 | 295 | 220 | 4400 | Water Cooled |
Direct Driven | 79±2 | G4” | G4” | 47 | 3100*1850*2100 |
| LSW-220W PM-10 | 10 | 145 | 13.2~32.8 | ||||||||||
| LSW-250W PM-8 | 8 | 116 | 17.1~42.6 | 340 | 250 | 4800 | Water Cooled |
Direct Driven | 79±2 | G4” | G4” | 53 | 3100*1850*2100 |
| LSW-250W PM-10 | 10 | 145 | 14.5~36.2 |
Company Profile
FAQ
Q1: Are you a manufacturer or trading company?
A1: Xihu (West Lake) Dis.in is professional screw air compressor factory located in HangZhou, China, CHINAMFG is Xihu (West Lake) Dis.in overseas market sales representative.
Q2: Xihu (West Lake) Dis.in is real member of Atlas-copco group?
A2: Yes, in 2571, Sweden Atlas-copco 100% acquired Xihu (West Lake) Dis.in.
Q3: Xihu (West Lake) Dis.in air-end from Atlas-copco?
A3: Yes, Xihu (West Lake) Dis.in LS/LSV, LOH, LSH and CS series air compressors all use Atlas Copco’s air-end.
Q4: What’s your delivery time?
A4: about 10-20days after you confirm the order, other voltage pls contact with us.
Q5: How long is your air compressor warranty?
A5: One year for the whole machine since leave our factory.
Q6: What’s the payment term?
A6:We accept T/T, LC at sight, Paypal etc.
Also we accept USD, RMB, JPY, EUR, HKD, GBP, CHF, KRW.
Q7: What’s the Min. Order requirement?
A7: 1unit
Q8: What service you can support?
A8: We offer after-sales service, custom service, production view service and one-stop service.
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| Lubrication Style: | Oil-free |
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| Cooling System: | Water Cooling |
| Power Source: | AC Power |
| Structure Type: | Closed Type |
| Installation Type: | Stationary Type |
| Type: | Single Screw Compressor |
| Samples: |
US$ 60517/unit
1 unit(Min.Order) | |
|---|
| Customization: |
Available
|
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|---|
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How Do You Ensure the Air Quality Produced by Oil-Free Compressors?
Ensuring the air quality produced by oil-free compressors involves a combination of factors, including proper equipment selection, appropriate maintenance practices, and adherence to industry standards. Here’s a detailed explanation of how to ensure the air quality produced by oil-free compressors:
1. Equipment Selection:
Choosing the right oil-free compressor is the first step in ensuring air quality. It is essential to select a compressor that is specifically designed for applications requiring clean air, such as food and beverage processing, pharmaceutical manufacturing, electronics assembly, and medical facilities. Consideration should be given to the compressor’s filtration capabilities, air treatment options, and compliance with relevant industry standards and regulations.
2. Filtration Systems:
The filtration systems integrated into oil-free compressors play a crucial role in maintaining air quality. These systems typically include pre-filters, coalescing filters, and activated carbon filters. Pre-filters remove larger particles, coalescing filters capture smaller particles and coalesce water vapor, and activated carbon filters absorb odors and remaining oil vapors. Regular inspection and replacement of filters are necessary to ensure their effectiveness in removing contaminants from the compressed air.
3. Regular Maintenance:
Regular maintenance is key to preserving air quality. This includes following the manufacturer’s recommended maintenance schedule, which may involve tasks such as filter replacement, lubrication of non-compressed parts, and inspection of seals and gaskets. Proper maintenance helps prevent air leaks, ensures the compressor operates efficiently, and reduces the risk of contamination.
4. Air Quality Testing:
Periodic air quality testing is essential to verify the effectiveness of the oil-free compressor and its filtration system. Air quality testing can involve measuring parameters such as oil content, particulate matter, moisture levels, and microbiological contamination. By conducting regular air quality tests, any deviations from the desired air quality standards can be identified, allowing for corrective actions to be taken promptly.
5. Compliance with Standards:
Adhering to industry standards and regulations is crucial in ensuring air quality. Standards such as ISO 8573 specify the acceptable limits for contaminants in compressed air, including oil content, particulate matter, and moisture. Compressors should be selected, installed, and operated in accordance with these standards. Regular auditing and certification processes can help ensure ongoing compliance and provide assurance of air quality to stakeholders.
6. Training and Education:
Proper training and education of personnel involved in the operation and maintenance of oil-free compressors are vital. Operators should be familiar with the specific requirements of oil-free compressors, including the importance of filtration, maintenance procedures, and recognizing signs of potential issues. Training programs can help ensure that operators have the necessary knowledge and skills to maintain air quality effectively.
By considering equipment selection, implementing robust filtration systems, conducting regular maintenance, performing air quality testing, complying with standards, and providing appropriate training, the air quality produced by oil-free compressors can be effectively ensured. These measures are essential for applications where air purity is critical, safeguarding product integrity, process efficiency, and the health and safety of personnel.
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What Is the Role of Filtration in Maintaining Air Quality in Oil-Free Compressors?
Filtration plays a crucial role in maintaining air quality in oil-free compressors. Here’s a detailed explanation of the role of filtration and its importance in ensuring clean and contaminant-free compressed air:
1. Removing Solid Particles:
One of the primary functions of filtration in oil-free compressors is to remove solid particles from the compressed air. Ambient air contains various contaminants such as dust, dirt, pollen, and other particulates. These particles can potentially damage downstream equipment, clog pneumatic components, and compromise the quality of the compressed air. Filtration systems, typically consisting of pre-filters and main filters, are used to capture and remove these solid particles, preventing them from entering the compressed air system.
2. Protecting Equipment:
Filtration helps protect the equipment and components of the compressed air system, including valves, cylinders, pneumatic tools, and instruments. Solid particles present in the compressed air can cause abrasion, wear, and damage to these components, leading to decreased performance, increased maintenance, and potential system failures. By effectively removing solid particles, filtration ensures the longevity and reliability of the equipment, reducing the need for frequent repairs and replacements.
3. Preventing Contamination:
Oil-free compressors are designed to produce clean, oil-free compressed air. However, certain contaminants can still find their way into the compressed air system. Filtration plays a vital role in preventing contamination by removing substances such as oil aerosols, water vapor, and microorganisms. These contaminants can be introduced through ambient air or can result from the compression process itself. Proper filtration ensures that the compressed air remains free from these contaminants, meeting the required air quality standards for specific applications.
4. Achieving Air Purity:
Many applications require compressed air with specific purity levels. For instance, in industries like pharmaceuticals, food and beverage, electronics, and healthcare, high-quality compressed air is essential to prevent product contamination or ensure the safety of sensitive processes. Filtration, along with other air treatment components such as dryers and separators, helps achieve the desired air purity levels by removing particulates, moisture, oil, and other impurities. This ensures that the compressed air meets the required standards and complies with industry regulations.
5. Extending Maintenance Intervals:
Efficient filtration in oil-free compressors can contribute to extended maintenance intervals. By effectively capturing and removing contaminants, filtration reduces the accumulation of debris and deposits within the compressed air system. This, in turn, reduces the frequency of maintenance tasks such as cleaning, purging, and component replacements. Extended maintenance intervals not only save time and labor but also minimize system downtime and associated costs.
6. Preserving Product Quality:
In applications where compressed air comes into direct contact with products or processes, maintaining air quality is crucial to preserve product integrity and quality. Contaminated compressed air can introduce impurities, odors, or foreign substances that may adversely affect the final product. Filtration ensures that the compressed air remains clean and free from contaminants, safeguarding the quality, purity, and consistency of the end products.
Overall, filtration plays a vital role in maintaining air quality in oil-free compressors. By removing solid particles, preventing contamination, achieving air purity, protecting equipment, extending maintenance intervals, and preserving product quality, filtration systems contribute to the reliable and efficient operation of compressed air systems in various industries and applications.
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Are Oil-Free Air Compressors More Environmentally Friendly?
Oil-free air compressors are considered more environmentally friendly compared to oil-lubricated air compressors. These compressors offer several features and advantages that contribute to their eco-friendly nature. Here’s a detailed explanation of why oil-free air compressors are considered more environmentally friendly:
1. Elimination of Oil Contamination:
One of the significant environmental benefits of oil-free air compressors is the elimination of oil contamination in the compressed air system. Oil-lubricated compressors require oil for lubrication, which can potentially leak or contaminate the compressed air. Oil contamination can have adverse effects on downstream equipment, processes, and the environment. In contrast, oil-free air compressors operate without oil, ensuring clean, oil-free compressed air and eliminating the risk of oil contamination.
2. Reduction of Oil Spills and Leaks:
Oil-lubricated compressors have a higher risk of oil spills or leaks due to the presence of lubricating oil in the system. Oil spills can have severe environmental consequences, polluting soil, water bodies, and ecosystems. Oil-free air compressors eliminate the risk of oil spills or leaks, as there is no oil used in the compression process. This reduces the potential harm to the environment and minimizes the need for costly cleanup efforts.
3. Energy Efficiency:
Oil-free air compressors can be more energy-efficient compared to oil-lubricated compressors. The absence of oil in the compression chamber reduces internal friction and mechanical losses, resulting in improved energy efficiency. Energy-efficient compressors consume less electricity, leading to reduced energy consumption and lower greenhouse gas emissions. By using oil-free compressors, businesses can contribute to energy conservation and environmental sustainability.
4. Lower Environmental Footprint:
Due to the elimination of oil-related maintenance tasks, such as oil filtration, oil changes, and oil disposal, oil-free compressors have a lower environmental footprint. These maintenance activities associated with oil-lubricated compressors require the use of resources and generate waste, including used oil and oil filters. By using oil-free compressors, the consumption of resources and the generation of hazardous waste are reduced, contributing to a more sustainable and environmentally friendly operation.
5. No Oil Contamination in Air Tools and Products:
Oil contamination in compressed air can have detrimental effects on air tools, pneumatic equipment, and end products. Oil-free air compressors ensure that the compressed air delivered to these devices is clean and oil-free. This helps maintain the performance and longevity of air tools and prevents oil-related product defects. By using oil-free compressors, businesses can avoid costly repairs or replacements of equipment and minimize the risk of producing non-conforming or defective products.
It’s important to note that while oil-free air compressors offer environmental advantages, they may have certain limitations and considerations. These include the need for specialized maintenance, potential higher operating temperatures, and reduced maximum operating pressures compared to oil-lubricated compressors. Therefore, it’s essential to evaluate the specific requirements of the application and consider the trade-offs between environmental benefits and operational considerations when choosing an air compressor.


editor by CX 2024-04-09