产品描述
Product Properties
Order number
lkjh’12’3
brand
an era
Article number
htjk22p
model
螺杆压缩机
Compressed medium
air
working principle
Screw compressor
Lubrication method
Oil lubricated air compressor
力量
20-2
Overall dimensions (length * width * height)
2000×3000(mm)
type
Fixed compressor
performance
Variable frequency, explosion-proof, low noise
noise
30(dB)
purpose
Marine compressors, oilfield compressors, air conditioning compressors, refrigerator compressors, refrigeration compressors, medical compressors, pneumatic tools, textile machinery, vehicle braking, mining compressors, sandblasting, painting, natural gas refueling stations, rock drills, plastic machinery compressors, door and window opening and closing, tire inflation
Exhaust volume
20
speed
1000(rpm)
Gas barrel capacity
2000(L)
Refueling volume
2000(L)
Number of cylinders
one
Main downstream platforms
EBay, Amazon, Wish, AliExpress, Standalone, LAZADA
Main sales regions
Africa, Europe, South America, Southeast Asia, North America, Northeast Asia, Middle East
Authorized own brand
no
Is it a cross-border export exclusive source of goods
yes
| 售后服务: | 360 |
|---|---|
| 保修单: | 360 |
| 润滑方式: | 无油 |
| 冷却系统: | 水冷 |
| 电源: | DC Power |
| Cylinder Position: | Angular |
| 定制化: |
可用的
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压缩机水润滑系统的主要组成部分有哪些?
压缩机中的水润滑系统通常由几个关键部件组成,这些部件协同工作,为压缩机提供润滑和冷却。以下是对压缩机水润滑系统关键部件的详细说明:
供水:
- 水源: 水润滑系统需要一个能够提供清洁且适宜润滑的水源。水源可以是市政供水、井水或专用水处理系统处理后的水等。
- 进水口: 进水口是水进入压缩机润滑系统的入口。它可能包括阀门、过滤器或其他部件,用于调节和控制水流量。
润滑系统:
- 水套: 水套是建在压缩机壳体或缸壁上的通道。这些水套允许水循环并与压缩机的运动部件直接接触,从而起到润滑和冷却的作用。水套有助于散发压缩过程中产生的热量,防止温度过高而损坏压缩机。
- 水泵: 水泵负责使水在水套和整个润滑系统中循环。它提供必要的压力,以确保足够的水流量并分配到压缩机的各个部件。
- 流量控制装置: 水润滑系统中通常包含流量控制装置,例如阀门或流量限制器,用于调节和控制水流量。这些装置有助于维持整个系统内的最佳水压和流量,从而确保有效的润滑和冷却。
- 净水器: 水过滤器用于去除水中的杂质、沉淀物或碎屑,然后再将水送入润滑系统。它们有助于防止堵塞,保护压缩机部件免受损坏,并保持润滑用水的水质。
- 水分离器: 水分离器是一种用于去除压缩空气中多余水分、湿气或冷凝水的部件。它确保离开压缩机的压缩空气干燥且不含过多的水分,从而防止下游出现腐蚀或污染等潜在问题。
控制与监测:
- 温度传感器: 温度传感器用于监测水温和压缩机部件的温度。它们将反馈信息传递给控制系统,以便在必要时调整水流量或冷却措施,从而维持最佳运行状态。
- 压力传感器: 压力传感器用于监测润滑系统内的水压。它们有助于确保水流量和压力在所需范围内,从而保证压缩机的正常润滑和冷却。
- 控制系统: 控制系统(可能包含传感器、阀门和控制器等组合)负责调节和维护水润滑系统的运行。它可以监测温度、压力和流量等各种参数,并根据需要进行调整,以确保高效安全的运行。
对水润滑系统的关键部件进行定期维护、检查和监控,对于确保其正常运行以及防止任何可能影响压缩机性能和使用寿命的问题至关重要。
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Can Water-Lubricated Compressors Be Integrated into Existing Systems?
Yes, water-lubricated compressors can be integrated into existing systems, but certain considerations need to be taken into account. Here’s a detailed explanation of integrating water-lubricated compressors into existing systems:
Space and Compatibility:
- Physical Space: Before integrating a water-lubricated compressor into an existing system, it’s important to assess the available physical space. Water-lubricated compressors may require additional components such as water pumps, filters, and separators, which need to be accommodated within the existing system layout.
- Compatibility: Compatibility between the water-lubricated compressor and the existing system is crucial. Factors such as pressure ratings, flow rates, electrical requirements, and control systems should be evaluated to ensure a seamless integration. It may be necessary to make modifications or upgrades to the existing system to achieve compatibility.
供水:
- 水源: Integrating a water-lubricated compressor requires a suitable water source. The availability of a clean and reliable water supply should be assessed. The water source can be from a municipal water supply, a well, or other water storage systems depending on the specific requirements of the compressor.
- 水处理: If the existing water supply does not meet the necessary quality standards for the water-lubricated compressor, water treatment systems may need to be installed. Water treatment can involve filtration, softening, or chemical treatment to ensure the water is clean and suitable for lubrication.
Installation and Configuration:
- Professional Installation: Integrating a water-lubricated compressor into an existing system typically requires professional installation. Qualified technicians or engineers with experience in water-lubricated compressors should handle the installation process to ensure proper configuration and alignment with the existing system.
- Piping and Connections: The installation may involve connecting the water-lubricated compressor to the existing piping system. Proper sizing, materials, and connections should be used to maintain the integrity of the system and prevent leaks or pressure losses.
System Performance and Optimization:
- System Evaluation: After integrating the water-lubricated compressor, it’s important to evaluate the overall performance of the system. This includes assessing the compressor’s efficiency, lubrication effectiveness, cooling capacity, and any potential impacts on the existing components.
- System Adjustments: Depending on the findings of the system evaluation, adjustments or fine-tuning may be necessary to optimize the performance of the integrated water-lubricated compressor. This can involve adjusting operating parameters, control settings, or making additional modifications to enhance system efficiency and reliability.
Overall, integrating water-lubricated compressors into existing systems is possible with proper planning, evaluation, and professional installation. Considering factors such as space availability, compatibility, water supply, installation requirements, and system optimization will help ensure a successful integration and the effective operation of the water-lubricated compressor within the existing system.
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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.


editor by CX 2023-10-05