제품 설명
Dental Silent Oil Free Air Compressor (piston type)
ModelNo.:JRGA61
Specification:
Power: 600W
Volt./Hz:110~240V50~60Hz
Speed:1400/1750r.p.m
AirFlow:118L/minat0Bar
NoiseLevel:52dB
MaxPressure:8Bar
RestartPressure:5Bar
Tank Capacity: 24L
Weight:24/32kg
Product Size:410*410*550mm
Remark:
All air compressors, can be with air dryer system & silent cabinet.
장점:
Super silent.
Low working noise, create a quiet working environment.
Low vibration.
With special rubber feet, reduce vibration during operation.
Pure airflow.
Oil free design, no lubrication oil needed during operation.
Core technology.
Diamond hardness cylinder ensure durable working performance.
Fashion and durable design.
Compactstructure,lightweight.Undernormalsituation,canbeusedformorethan20000hours.
Use safety.
With multiple self-protection system, if here will be abnormal with pressure, current or voltage, the motor would cut off automatically to ensure equipment and personal safety.
Easy operation.
Quitesimpleoperation,connecttopowersupply,thennoneedanymoremaintenance,justdrainageregularly.
Low energy consumption.
Fullautomaticdesign,automaticstopandrestartcontrol,lowconsumption.
High precision filtration.
With double filters, ensure high precision of outlet airflow.
Tank inside has done anti-rust treatment.
Ensure pure outlet airflow for medical equipment.
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| 유형: | Dental Equipment |
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| Material: | Metal |
| Applicable Departments: | All |
| Nature: | Shared Instrument Equipment |
| Certification: | CE |
| Kind: | Oil Free Air Compressor |
| 맞춤 설정: |
사용 가능
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What Are the Key Components of a Water-Lubrication System in Compressors?
A water-lubrication system in compressors typically consists of several key components that work together to provide lubrication and cooling to the compressor. Here’s a detailed explanation of the key components of a water-lubrication system in compressors:
상수도:
- Water Source: The water-lubrication system requires a water source that provides clean and suitable water for lubrication. The water can be sourced from various places such as municipal water supply, well water, or treated water from a dedicated water treatment system.
- Water Inlet: The water inlet is the entry point where water enters the compressor’s lubrication system. It may include valves, filters, or other components to regulate and control the water flow.
Lubrication System:
- Water Jackets: Water jackets are channels or passages built into the compressor’s housing or cylinder walls. These jackets allow water to circulate and come into direct contact with the compressor’s moving parts, providing lubrication and cooling. The water jackets help dissipate heat generated during compression and prevent excessive temperatures that could damage the compressor.
- Water Pump: The water pump is responsible for circulating water through the water jackets and the entire lubrication system. It provides the necessary pressure to ensure adequate water flow and distribution to the compressor’s components.
- Flow Control Devices: Flow control devices, such as valves or flow restrictors, are often included in the water-lubrication system to regulate and control the water flow rate. These devices help maintain optimal water pressure and flow throughout the system, ensuring effective lubrication and cooling.
- Water Filters: Water filters are used to remove impurities, sediment, or debris from the water before it enters the lubrication system. They help prevent blockages, protect the compressor’s components from damage, and maintain the quality of the water used for lubrication.
- Water Separator: A water separator is a component that removes excess water, moisture, or condensate from the compressed air. It ensures that the compressed air leaving the compressor is dry and free from excess water content, preventing potential issues such as corrosion or contamination downstream.
Control and Monitoring:
- Temperature Sensors: Temperature sensors are used to monitor the temperature of the water and the compressor components. They provide feedback to the control system, allowing for adjustments in water flow or cooling measures if required to maintain optimal operating conditions.
- Pressure Sensors: Pressure sensors are employed to monitor the water pressure within the lubrication system. They help ensure that the water flow and pressure are within the desired range, allowing for proper lubrication and cooling of the compressor.
- Control System: A control system, which may include a combination of sensors, valves, and controllers, is responsible for regulating and maintaining the operation of the water-lubrication system. It can monitor various parameters, such as temperature, pressure, and flow, and make adjustments as needed to ensure efficient and safe operation.
Regular maintenance, inspection, and monitoring of the key components of the water-lubrication system are essential to ensure its proper functioning and to prevent any issues that could affect the performance and longevity of the compressor.
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How Do Water-Lubricated Air Compressors Compare in Terms of Maintenance Costs?
When comparing water-lubricated air compressors to other types of compressors, there are several factors that can influence the maintenance costs. Here’s a detailed explanation of how water-lubricated air compressors compare in terms of maintenance costs:
Initial Investment:
- Higher Initial Cost: Water-lubricated air compressors tend to have a higher initial cost compared to oil-lubricated compressors. This is primarily due to the additional components required for the water-lubrication system, such as water pumps, filters, and separators. The higher initial investment can impact the overall cost of the compressor system.
Lubrication System Maintenance:
- 수처리 및 여과: Water-lubricated compressors may require additional maintenance for water treatment and filtration systems. Regular monitoring, maintenance, and replacement of filters or treatment media are necessary to ensure the water quality remains suitable for lubrication. The cost of water treatment and filtration maintenance should be considered in the overall maintenance costs.
- Water Quality Monitoring: Monitoring the quality of the water used in water-lubricated compressors is crucial. This may involve periodic water analysis, temperature monitoring, and water chemistry checks. The cost of water quality monitoring should be factored into the maintenance costs.
Component Lifespan and Replacement:
- Extended Component Lifespan: Proper water-lubrication and cooling can contribute to the extended lifespan of compressor components. Reduced friction, effective cooling, and contaminant control can minimize wear and damage to components, leading to lower replacement costs over time. Water-lubricated compressors may have advantages in terms of component longevity, potentially reducing the frequency of component replacements.
Corrosion Prevention:
- Corrosion Protection Measures: Water-lubricated compressors require corrosion prevention measures due to the presence of water within the system. Corrosion-resistant materials, coatings, or regular maintenance procedures are necessary to prevent corrosion-related issues. The cost of implementing and maintaining corrosion protection measures should be considered in the overall maintenance costs.
Overall, the maintenance costs of water-lubricated air compressors can vary depending on factors such as the specific design and components of the compressor, the quality of the water used, the effectiveness of water treatment and filtration systems, and the implementation of corrosion prevention measures. While water-lubricated compressors may have higher initial costs and additional maintenance requirements, they can potentially offer advantages in terms of extended component lifespan, reduced component replacements, and effective lubrication. It is important to consider these factors and consult the manufacturer’s guidelines to accurately assess the maintenance costs associated with water-lubricated air compressors.
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수윤활식 공기압축기는 오일윤활식 공기압축기와 어떻게 다를까요?
수윤활식 공기압축기와 유윤활식 공기압축기는 윤활 방식, 성능, 유지보수 및 환경 영향 측면에서 뚜렷한 차이가 있습니다. 두 방식의 자세한 비교는 다음과 같습니다.
| 수윤활식 공기 압축기 | 오일 윤활식 공기 압축기 | |
|---|---|---|
| 윤활 방법 | 물은 수윤활식 압축기에서 윤활유로 사용됩니다. 물은 윤활 작용과 열 방출을 제공합니다. | 오일은 오일 윤활식 압축기에서 윤활유로 사용됩니다. 오일은 윤활, 밀봉 및 열 방출 기능을 제공합니다. |
| 성능 | 수분 윤활은 효율적인 열 방출 및 냉각 특성을 제공합니다. 압축기 작동 중에 발생하는 열을 효과적으로 제거하여 과열을 방지하고 압축기의 수명을 연장할 수 있습니다. 수분 윤활은 열 발생량이 많은 환경에 적합합니다. | 오일 윤활은 탁월한 윤활 특성을 제공하여 원활한 작동과 마찰 감소를 보장합니다. 또한 우수한 밀봉 기능을 통해 공기 누출을 방지합니다. 오일 윤활식 압축기는 고압 및 연속 작동이 요구되는 고하중 작업에 주로 사용됩니다. |
| 유지 | 일반적으로 수윤활은 유윤활에 비해 유지보수가 적게 필요합니다. 물은 끈적이는 잔여물이나 침전물을 남기지 않아 청소 과정이 간편하고 윤활유 교체 빈도를 줄여줍니다. 하지만 수윤활은 부식을 방지하고 적절한 수질을 유지하기 위한 추가적인 조치가 필요할 수 있습니다. | 일반적으로 오일 윤활 시스템은 더 많은 유지 보수가 필요합니다. 정기적인 오일 교환, 필터 교체 및 오일 레벨 점검이 필수적입니다. 먼지나 습기와 같은 오염 물질은 오일 윤활에 악영향을 미쳐 더 잦은 유지 보수 작업을 필요로 할 수 있습니다. |
| 환경적 영향 | 물을 이용한 윤활은 오일을 이용한 윤활에 비해 환경 친화적입니다. 물은 무독성이고 생분해성이 있으며 대기나 수질 오염을 유발하지 않습니다. 환경에 미치는 영향이 적고 누출이나 유출 시 오염 위험도 낮습니다. | 오일 윤활은 환경에 영향을 미칠 수 있습니다. 오일 누출이나 유출은 대기, 토양, 수자원을 포함한 환경을 오염시킬 수 있습니다. 사용済み 오일은 오염을 방지하기 위해 적절한 방법으로 처리해야 합니다. 또한 오일 윤활식 압축기는 휘발성 유기 화합물(VOC)을 공기 중으로 방출하여 대기 오염을 유발합니다. |
요약하자면, 수윤활식 공기 압축기는 효율적인 열 방출이 뛰어나고 유지 보수가 적게 필요하며 환경에 미치는 영향도 적습니다. 반면, 유윤활식 공기 압축기는 탁월한 윤활 성능을 제공하며 고하중 작업에 적합합니다. 수윤활 방식과 유윤활 방식 중 어떤 것을 선택할지는 특정 요구 사항, 작동 조건 및 환경적 고려 사항에 따라 결정됩니다.


editor by CX 2023-10-07