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China wholesaler Dual-Stage Rotary Series Vacuum Pump vacuum pump oil

产品说明

2X dual-stage rotary series vacuum pump, is in dual-stage structure, the high-pressure stage and low-pressure stage, and its inlet is connected with the vacuum equipment. The pump technical parameters: 6×10-2pa. As required by users, a vacuum booster pump can be added, and take this pump as the pre-stage pump, to boost the pump draw force, and you will obtain the higher vacuum degree when you use this pump for gas withdrawal. The pump is suitable for metallurgy, chemical, optical power supply vacuum.
 
2X dual-stage rotary series vacuum pump:
l. 2X dual-stage rotary series vacuum pump is a basic equipment, and it is widely used in electronic elements and appliances manufacture, vacuum drying, filtering, soaking, welding.
2. 2X dual-stage rotary series vacuum pump, work in temperature 5ºC~40ºC.
3. 2X dual-stage rotary series vacuum pump inlet continuous time shall not exceed 3min.

Technical parameters:

  2X-2 2X-4A 2X-8A 2X-8 2X-15A 2X-15 2X-30 2X-70
2 4 8 15 30 70
Limit vacuum   Pa(Torr) 6×10-2(≤5×10-4)110
6×10-1(5×10-3) (≤1×10)
Motor power (KW) 0.37 0.55 1.1 1.5 3 5.5
Temperature rise (ºC) ≤40
Inlet diameter (mm) 18 25 40 40 65 80
rotation speed (r/min) 450 590 420      
Oil capacity (L) 0.7 1.0 2.0 2.8 3.0 4.2
noise dB(A) 68 ≤68 ≤70 ≤75 ≤78(~70) ≤80(~75)
Dimensions (cm) 56×31×39 56×34×37 79×43×54 79×53×54 78×50×56 91×65×70
Type DDC-JQ25 DDC-JQ40 DDC-JQ65 DDC-JQ80
Weight (kg) 58 55 80 110 232 330
Cooling mode Natural cooling Water cooling Natural cooling Water cooling
Cooling water (L/min) >0.5 >0.8 >1 >2

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售后服务: All Life Service
保修: 1 Year Warranty
Max.Head: >150m
Max.Capacity: >400 L/min
Driving Type: Magnetic
Impeller Number: Single-Stage Pump
定制:
可用

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真空泵

如何维护真空泵并排除故障?

真空泵的维护和故障排除对于确保其最佳性能和使用寿命至关重要。以下是详细说明:

真空泵的维护:

1.定期检查:定期对泵进行目视检查,检查是否有任何损坏、泄漏或异常磨损的迹象。检查电机、皮带、联轴器和其他组件是否正确对齐和处于正常状态。

2.润滑:遵循制造商的润滑指南。某些真空泵需要定期换油或润滑活动部件。确保使用正确类型和数量的润滑油。

3.油位检查:监控油封泵的油位,并将其保持在建议范围内。必要时按照制造商的说明添加或更换机油。

4.过滤器维护:定期清洁或更换过滤器,以防止堵塞并确保气流正常。过滤器堵塞会影响泵的性能并增加能耗。

5.冷却系统:如果真空泵有冷却系统,则应定期检查其清洁度和功能是否正常。根据需要清洁或更换冷却部件,以防止过热。

6.密封件和垫圈:检查密封件和垫圈是否有磨损或泄漏迹象。及时更换任何损坏或磨损的密封件,以保持气密性。

7.阀门维护:如果真空泵包括阀门,请定期检查和清洁,以确保正常运行并防止堵塞。

8.振动和噪音:监测泵是否有过度振动或异常噪音,这可能表明存在偏差、轴承磨损或其他机械问题。及时处理这些问题,防止进一步损坏。

排除真空泵问题:

1.真空度不足:如果泵未达到所需的真空度,请检查系统中是否存在泄漏、密封不当或密封件磨损。检查阀门、连接处和密封件是否泄漏,并根据需要进行修理或更换。

2.性能不佳:如果泵的性能不佳,请检查过滤器是否堵塞、润滑是否不足或部件是否磨损。清洁或更换过滤器,确保适当的润滑,必要时更换磨损的部件。

3.过热:如果泵过热,检查冷却系统是否堵塞或气流不足。清洁或更换冷却部件,并确保泵周围通风良好。

4.噪音或振动过大:噪音或振动过大可能表示对准不准、轴承磨损或其他机械问题。检查并修理或更换损坏或磨损的部件。确保旋转部件的正确对准和平衡。

5.电机问题:如果泵电机无法启动或运行不稳定,请检查电源、电气连接和电机部件。使用适当的电气测试设备测试电机,必要时咨询电工或电机专家。

6.耗油量过大:如果泵的耗油量很大,请检查是否有泄漏或其他可能导致机油损失的问题。检查密封件、垫圈和连接处是否泄漏,并根据需要进行修理。

7.异常气味:异常气味(如烧焦味)可能表示过热或其他机械故障。请及时处理,必要时咨询技术人员。

8.制造商指南:请务必参考制造商针对您的真空泵型号提供的维护和故障排除指南和建议。遵循规定的维护计划,必要时寻求专业协助。

遵循正确的维护程序并及时解决任何故障问题,就能确保真空泵的可靠运行和使用寿命。

真空泵

Can Vacuum Pumps Be Used for Soil and Groundwater Remediation?

Vacuum pumps are indeed widely used for soil and groundwater remediation. Here’s a detailed explanation:

Soil and groundwater remediation refers to the process of removing contaminants from the soil and groundwater to restore environmental quality and protect human health. Vacuum pumps play a crucial role in various remediation techniques by facilitating the extraction and treatment of contaminated media. Some of the common applications of vacuum pumps in soil and groundwater remediation include:

1. Soil Vapor Extraction (SVE): Soil vapor extraction is a widely used remediation technique for volatile contaminants present in the subsurface. It involves the extraction of vapors from the soil by applying a vacuum to the subsurface through wells or trenches. Vacuum pumps create a pressure gradient that induces the movement of vapors towards the extraction points. The extracted vapors are then treated to remove or destroy the contaminants. Vacuum pumps play a vital role in SVE by maintaining the necessary negative pressure to enhance the volatilization and extraction of contaminants from the soil.

2. Dual-Phase Extraction (DPE): Dual-phase extraction is a remediation method used for the simultaneous extraction of both liquids (such as groundwater) and vapors (such as volatile organic compounds) from the subsurface. Vacuum pumps are utilized to create a vacuum in extraction wells or points, drawing out both the liquid and vapor phases. The extracted groundwater and vapors are then separated and treated accordingly. Vacuum pumps are essential in DPE systems for efficient and controlled extraction of both liquid and vapor-phase contaminants.

3. Groundwater Pumping and Treatment: Vacuum pumps are also employed in groundwater remediation through the process of pumping and treatment. They are used to extract contaminated groundwater from wells or recovery trenches. By creating a vacuum or negative pressure, vacuum pumps facilitate the flow of groundwater towards the extraction points. The extracted groundwater is then treated to remove or neutralize the contaminants before being discharged or re-injected into the ground. Vacuum pumps play a critical role in maintaining the required flow rates and hydraulic gradients for effective groundwater extraction and treatment.

4. Air Sparging: Air sparging is a remediation technique used to treat groundwater and soil contaminated with volatile organic compounds (VOCs). It involves the injection of air or oxygen into the subsurface to enhance the volatilization of contaminants. Vacuum pumps are utilized in air sparging systems to create a vacuum or negative pressure zone in wells or points surrounding the contaminated area. This induces the movement of air and oxygen through the soil, facilitating the release and volatilization of VOCs. Vacuum pumps are essential in air sparging by maintaining the necessary negative pressure gradient for effective contaminant removal.

5. Vacuum-Enhanced Recovery: Vacuum-enhanced recovery, also known as vacuum-enhanced extraction, is a remediation technique used to recover non-aqueous phase liquids (NAPLs) or dense non-aqueous phase liquids (DNAPLs) from the subsurface. Vacuum pumps are employed to create a vacuum or negative pressure gradient in recovery wells or trenches. This encourages the movement and extraction of NAPLs or DNAPLs towards the recovery points. Vacuum pumps facilitate the efficient recovery of these dense contaminants, which may not be easily recoverable using traditional pumping methods.

It’s important to note that different types of vacuum pumps, such as rotary vane pumps, liquid ring pumps, or air-cooled pumps, may be used in soil and groundwater remediation depending on the specific requirements of the remediation technique and the nature of the contaminants.

In summary, vacuum pumps play a vital role in various soil and groundwater remediation techniques, including soil vapor extraction, dual-phase extraction, groundwater pumping and treatment, air sparging, and vacuum-enhanced recovery. By creating and maintaining the necessary pressure differentials, vacuum pumps enable the efficient extraction, treatment, and removal of contaminants, contributing to the restoration of soil and groundwater quality.

真空泵

Can Vacuum Pumps Be Used in Laboratories?

Yes, vacuum pumps are extensively used in laboratories for a wide range of applications. Here’s a detailed explanation:

Vacuum pumps are essential tools in laboratory settings as they enable scientists and researchers to create and control vacuum or low-pressure environments. These controlled conditions are crucial for various scientific processes and experiments. Here are some key reasons why vacuum pumps are used in laboratories:

1. Evaporation and Distillation: Vacuum pumps are frequently used in laboratory evaporation and distillation processes. By creating a vacuum, they lower the boiling point of liquids, allowing for gentler and more controlled evaporation. This is particularly useful for heat-sensitive substances or when precise control over the evaporation process is required.

2. Filtration: Vacuum filtration is a common technique in laboratories for separating solids from liquids or gases. Vacuum pumps create suction, which helps draw the liquid or gas through the filter, leaving the solid particles behind. This method is widely used in processes such as sample preparation, microbiology, and analytical chemistry.

3. Freeze Drying: Vacuum pumps play a crucial role in freeze drying or lyophilization processes. Freeze drying involves removing moisture from a substance while it is in a frozen state, preserving its structure and properties. Vacuum pumps facilitate the sublimation of frozen water directly into vapor, resulting in the removal of moisture under low-pressure conditions.

4. Vacuum Ovens and Chambers: Vacuum pumps are used in conjunction with vacuum ovens and chambers to create controlled low-pressure environments for various applications. Vacuum ovens are used for drying heat-sensitive materials, removing solvents, or conducting reactions under reduced pressure. Vacuum chambers are utilized for testing components under simulated space or high-altitude conditions, degassing materials, or studying vacuum-related phenomena.

5. Analytical Instruments: Many laboratory analytical instruments rely on vacuum pumps to function properly. For example, mass spectrometers, electron microscopes, surface analysis equipment, and other analytical instruments often require vacuum conditions to maintain sample integrity and achieve accurate results.

6. Chemistry and Material Science: Vacuum pumps are employed in numerous chemical and material science experiments. They are used for degassing samples, creating controlled atmospheres, conducting reactions under reduced pressure, or studying gas-phase reactions. Vacuum pumps are also used in thin film deposition techniques like physical vapor deposition (PVD) and chemical vapor deposition (CVD).

7. Vacuum Systems for Experiments: In scientific research, vacuum systems are often designed and constructed for specific experiments or applications. These systems can include multiple vacuum pumps, valves, and chambers to create specialized vacuum environments tailored to the requirements of the experiment.

Overall, vacuum pumps are versatile tools that find extensive use in laboratories across various scientific disciplines. They enable researchers to control and manipulate vacuum or low-pressure conditions, facilitating a wide range of processes, experiments, and analyses. The choice of vacuum pump depends on factors such as required vacuum level, flow rate, chemical compatibility, and specific application needs.

China wholesaler Dual-Stage Rotary Series Vacuum Pump   vacuum pump oil	China wholesaler Dual-Stage Rotary Series Vacuum Pump   vacuum pump oil
editor by CX 2024-02-11

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