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China wholesaler China Factory Best Price Dual Stage Vacuum Pump with high quality

产品说明

产品说明

Main Features:

1. Designed specially for HVAC/R service

2. Ultimate deep vacuum: CHINAMFG is 5PA, while dual voltage is 0.3 Pa

3. Compact design with aluminum hosing and easy to carry.

4. Thermal protector in the motor to guarantee the pump to run steadily.

5. Both 1/4′ and 3/8′ SAE flare inlet connections allow for flexibility of connections.

6. Vacuum pump oil included.

7. Suitable for all the main voltage design in the market.

8. Individual design for special customers.

Detailed Photos

产品参数

Single stage
 

模型 VP115 VP125 VP135 VP145 VP160 VP180 VP1100
流量 50HZ 1.5CFM 2.5CFM 3.5CFM 4.5CFM 6CFM 8CFM 10CFM
42 升/分钟 70 升/分钟 100 升/分钟 128 升/分钟 170 升/分钟 226 升/分钟 283 升/分钟
60HZ 1.8CFM 3CFM 4CFM 5CFM 7CFM 9CFM 12CFM
60L/min 84 升/分钟 114 升/分钟 142 升/分钟 198 升/分钟 254 升/分钟 340 升/分钟
Ultime Vacuum 5Pa 5Pa 5Pa 5Pa 5Pa 5Pa 5Pa
150microna 150microna 150microna 150microna 150microna 150microna 150microna
电源 1/4HP 1/4HP 1/3HP 1/3HP 1/2HP 3/4HP 1HP
Inlet port 1/4″ Flare 1/4″ Flare 1/4″ Flare 1/4″ Flare 1/4″ Flare 1/4″ & 1/8″Flare 1/4″ & 1/8″Flare
油容量 280 毫升 260ml 330ml 310ml 450 毫升 650ml 800 毫升
尺寸(毫米) 270*119*216 270*119*216 278*119*216 278*119*216 320*134*232 370*140*250 390*140*250
Weight (kg) 4.6 5 5.6 6 7.8 12.3 12.8

公司简介

ZheJiang SHING CHEMICAL CO. LTD. is a professional company engaged in refrigerant gas and refrigeration spare parts and tools. 
Most of our products have international approvals, such as CE, KGS and DOT. Our good quality and perfect services help us earn a high reputation from clients from Europe, South America, the Middle East, Southeast Asia and Africa.
We are sincerely looking CHINAMFG to cooperating with you to supply the best products to people around the world! We welcome your contact and visit!
We are the leading exporter of the refrigerant gas,and we could serve you all kinds of refrigerant at a reasonable price.
We also have Certifications of CCC//ROHS//ISO9001. This ensure the high quality of the goods.

常见问题

1.How about the delivery time?

Within 25 ~ 30 days after we receive the order.

2.What kind of payments do you support?

30% T/T in advance ,70 % against the copy of B/L . 100% T/T for samples . Other kinds please contact with us.

3.What’s the MOQ?

Generally speaking ,the MOQ of this backward centrifugal fan is 500 pieces .Different products have different MOQ,

Please contact with us.

4.Can you produce according to customer’s design?

Sure ,we are professional manufacturer ,OEM are also welcome.

5.Can you tell me your main customers?

We have business relationshi with Gree , Media ,LG ,ebmpapst , American Carrier ,etc

Our Team

 

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售后服务: 可用
保修: 1 Year for Motor
Oil or Not: Oil
结构 旋转真空泵
Exhauster Method: Positive Displacement Pump
真空度 High Vacuum
样本
US$ 90/Piece
1 件(最小订单量)

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定制:
可用

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真空泵

What Is the Impact of Altitude on Vacuum Pump Performance?

The performance of vacuum pumps can be influenced by the altitude at which they are operated. Here’s a detailed explanation:

Altitude refers to the elevation or height above sea level. As the altitude increases, the atmospheric pressure decreases. This decrease in atmospheric pressure can have several effects on the performance of vacuum pumps:

1. Reduced Suction Capacity: Vacuum pumps rely on the pressure differential between the suction side and the discharge side to create a vacuum. At higher altitudes, where the atmospheric pressure is lower, the pressure differential available for the pump to work against is reduced. This can result in a decrease in the suction capacity of the vacuum pump, meaning it may not be able to achieve the same level of vacuum as it would at lower altitudes.

2. Lower Ultimate Vacuum Level: The ultimate vacuum level, which represents the lowest pressure that a vacuum pump can achieve, is also affected by altitude. As the atmospheric pressure decreases with increasing altitude, the ultimate vacuum level that can be attained by a vacuum pump is limited. The pump may struggle to reach the same level of vacuum as it would at sea level or lower altitudes.

3. Pumping Speed: Pumping speed is a measure of how quickly a vacuum pump can remove gases from a system. At higher altitudes, the reduced atmospheric pressure can lead to a decrease in pumping speed. This means that the vacuum pump may take longer to evacuate a chamber or system to the desired vacuum level.

4. Increased Power Consumption: To compensate for the decreased pressure differential and achieve the desired vacuum level, a vacuum pump operating at higher altitudes may require higher power consumption. The pump needs to work harder to overcome the lower atmospheric pressure and maintain the necessary suction capacity. This increased power consumption can impact energy efficiency and operating costs.

5. Efficiency and Performance Variations: Different types of vacuum pumps may exhibit varying degrees of sensitivity to altitude. Oil-sealed rotary vane pumps, for example, may experience more significant performance variations compared to dry pumps or other pump technologies. The design and operating principles of the vacuum pump can influence its ability to maintain performance at higher altitudes.

It’s important to note that vacuum pump manufacturers typically provide specifications and performance curves for their pumps based on standardized conditions, often at or near sea level. When operating a vacuum pump at higher altitudes, it is advisable to consult the manufacturer’s guidelines and consider any altitude-related limitations or adjustments that may be necessary.

In summary, the altitude at which a vacuum pump operates can have an impact on its performance. The reduced atmospheric pressure at higher altitudes can result in decreased suction capacity, lower ultimate vacuum levels, reduced pumping speed, and potentially increased power consumption. Understanding these effects is crucial for selecting and operating vacuum pumps effectively in different altitude environments.

真空泵

How Do Vacuum Pumps Assist in Freeze-Drying Processes?

Freeze-drying, also known as lyophilization, is a dehydration technique used in various industries, including pharmaceutical manufacturing. Vacuum pumps play a crucial role in facilitating freeze-drying processes. Here’s a detailed explanation:

During freeze-drying, vacuum pumps assist in the removal of water or solvents from pharmaceutical products while preserving their structure and integrity. The freeze-drying process involves three main stages: freezing, primary drying (sublimation), and secondary drying (desorption).

1. Freezing: In the first stage, the pharmaceutical product is frozen to a solid state. Freezing is typically achieved by lowering the temperature of the product below its freezing point. The frozen product is then placed in a vacuum chamber.

2. Primary Drying (Sublimation): Once the product is frozen, the vacuum pump creates a low-pressure environment within the chamber. By reducing the pressure, the boiling point of water or solvents present in the frozen product is lowered, allowing them to transition directly from the solid phase to the vapor phase through a process called sublimation. Sublimation bypasses the liquid phase, preventing potential damage to the product’s structure.

The vacuum pump maintains a low-pressure environment by continuously removing the water vapor or solvent vapor generated during sublimation. The vapor is drawn out of the chamber, leaving behind the freeze-dried product. This process preserves the product’s original form, texture, and biological activity.

3. Secondary Drying (Desorption): After the majority of the water or solvents have been removed through sublimation, the freeze-dried product may still contain residual moisture or solvents. In the secondary drying stage, the vacuum pump continues to apply vacuum to the chamber, but at a higher temperature. The purpose of this stage is to remove the remaining moisture or solvents through evaporation.

The vacuum pump maintains the low-pressure environment, allowing the residual moisture or solvents to evaporate at a lower temperature than under atmospheric pressure. This prevents potential thermal degradation of the product. Secondary drying further enhances the stability and shelf life of the freeze-dried pharmaceutical product.

By creating and maintaining a low-pressure environment, vacuum pumps enable efficient and controlled sublimation and desorption during the freeze-drying process. They facilitate the removal of water or solvents while minimizing the potential damage to the product’s structure and preserving its quality. Vacuum pumps also contribute to the overall speed and efficiency of the freeze-drying process by continuously removing the vapor generated during sublimation and evaporation. The precise control provided by vacuum pumps ensures the production of stable and high-quality freeze-dried pharmaceutical products.

真空泵

暖通空调系统中真空泵的用途是什么?

在暖通空调(HVAC)系统中,真空泵起着至关重要的作用。下面是详细说明:

暖通空调系统中真空泵的作用是去除制冷剂管路和系统本身中的空气和湿气。暖通空调系统,尤其是依靠制冷的系统,需要在特定的压力和温度条件下运行,以促进热量的传递。为确保最佳性能和效率,必须从系统中排出任何不可冷凝的气体、空气和湿气。

以下是暖通空调系统中使用真空泵的主要原因:

1.除湿:由于系统安装、泄漏或维护不当等各种因素,暖通空调系统中可能存在湿气。当湿气与制冷剂结合时,会导致结冰、系统效率降低以及系统部件的潜在损坏等问题。真空泵通过创造低压环境来帮助去除湿气,从而使湿气沸腾并变成蒸汽,有效地将其从系统中抽空。

2.消除空气和不凝性气体:空气和不凝性气体(如氮气或氧气)可能在安装、维修过程中或通过泄漏进入暖通空调系统。这些气体会阻碍制冷过程、影响传热并降低系统性能。通过使用真空泵,技术人员可以排空空气和不凝性气体,确保系统在设计的制冷剂和压力水平下运行。

3.准备制冷剂充注:在向暖通空调系统充注制冷剂之前,关键是要抽真空,以清除任何杂质,确保系统清洁,为制冷剂的最佳循环做好准备。通过使用真空泵对系统进行抽真空,技术人员可确保制冷剂进入清洁可控的环境,从而降低系统故障的风险并提高整体效率。

4.泄漏检测:真空泵也用于暖通空调系统的泄漏检测。抽空系统后,技术人员可以监测压力是否保持稳定。如果压力明显下降,则表明存在泄漏,技术人员可在向系统注入制冷剂之前查明并修复泄漏。

总之,真空泵在暖通空调系统中起着至关重要的作用,它可以去除湿气、排除空气和不凝性气体、为制冷剂充注做好准备并帮助检测泄漏。这些功能有助于确保最佳的系统性能、能效和使用寿命,同时还能降低系统故障和损坏的风险。

China wholesaler China Factory Best Price Dual Stage Vacuum Pump   with high quality China wholesaler China Factory Best Price Dual Stage Vacuum Pump   with high quality
editor by Dream 2024-04-26

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