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中国工厂液环真空泵(2BE4526)真空泵发动机

产品说明

Water Ring Vacuum Pump / Liquid Ring Vacuum Pump (2BE4526)

The 2BE4 vacuum pump produced by CHINAMFG International (Xihu (West Lake) Dis.) Co., Ltd was developed from the proven CHINAMFG 2BE3 pumps, whose reliable performance has been further improved..

The footprint and connections to the CHINAMFG 2BE4 models are identical to its predecessors, the CHINAMFG 2BE3 pump. Therefore, exchanging or upgrading to the more efficient CHINAMFG 2BE3 requires no site modifications.

The CHINAMFG 2BE4 model is available in cast iron, with stainless steel coming soon. The 2BE4 is perfect for use in mining, filter applications, paper mills, power plants, chemical plants, refineries and more

Main type for 2BE4 series vacuum pump and compressor
2BE4400,2BE4406,2BE4420,2BE4426,2BE4500,2BE4506,2BE4520,2BE4526,2BE4600,2BE4606, 2BE4620, 2BE4626, 2BE4 670, 2BE4676,2BE4 720,2BE4726

With our high products quality and good services, we have got the CE certificate for our products. 
Our experienced and knowledgeable staff is dedicated to providing high quality products and after-sales supports.

Welcome clients from home and abroad to contact us and establish business relations

The main characteristics of 2BE4 series products:

All the bearings are the imported products with the brand name of CHINAMFG orNTN for ensuring the precise orientation and the high stability during the working of the pump.

The material of the impeller is QT400 nodular iron or stainless steel for ensuring the stability when the pump works under the rigorous condition and can extend the lifetime of the pump.

The casing is made of steel or stainless steel plates to extend the lifetime of the 2BE1 series pumps.

The shaft bushing is made of stainless steel to improve the lifetime of the pump 5 times than the normal material.

The V-belt pulley (when the pump is driven by the belt) is used the high precise pulley with taper bushing to keep the reliability of the pump and extend its life. And it is also easy to mantle and dismantle.

The coupling is used to drive the pump directly. The flexible part connecting the 2 half coupling is made of polyurethane that makes the pump more reliable.

The unique design to set the separator above the pump saves the space and decreases the noise efficiently.

All the parts are cast by the resin sands that make the pump surface very smooth. It is not necessary to cover the surface of the pumps with putty and gives out the heat efficiently.

The mechanical seals (optional) are used the imported products to avoid the leakage when the pump works for a long time.

               

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Oil or Not: Oil Free
结构 Reciprocating Vacuum Pump
Exhauster Method: Entrapment Vacuum Pump
真空度 High Vacuum
Work Function: 真空泵
Working Conditions: Wet
定制:
可用

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真空泵

真空泵可用于汽车行业吗?

是的,真空泵广泛应用于汽车行业的各种应用中。下面是详细说明:

汽车行业的一些关键功能和系统都依赖于真空泵。真空泵在增强性能、提高燃油效率和实现各种汽车系统的运行方面发挥着至关重要的作用。以下是真空泵在汽车行业的一些主要应用:

1.制动系统:真空泵通常用于真空辅助制动系统,也称为动力制动。这些系统利用真空压力放大驾驶员施加在制动踏板上的力,使制动更有效、反应更灵敏。真空泵有助于产生助力制动所需的真空,确保制动性能可靠稳定。

2.排放控制系统:真空泵是车辆排放控制系统的组成部分。它们协助废气再循环 (EGR) 阀和蒸发排放控制 (EVAP) 系统等部件的运行。真空泵有助于为这些系统的正常运行创造必要的真空条件,减少有害气体的排放,提高整体环保性能。

3.暖通空调系统:车辆的供暖、通风和空调(HVAC)系统通常使用真空泵来实现各种功能。真空泵可帮助控制真空执行器,从而调节暖通空调系统的方向、温度和气流。它们可确保车辆内部气候控制系统的高效运行和精确控制。

4.涡轮增压器和增压器系统:在以性能为导向的车辆中,涡轮增压器和增压器系统用于提高发动机功率和效率。真空泵在这些系统中的作用是为废气门、排气阀和其他控制机构提供真空压力。这些部件有助于调节增压压力,确保强制感应系统达到最佳性能。

5.燃油输送系统:真空泵用于某些类型的燃油输送系统,如机械燃油泵。这些泵利用真空压力从燃油箱抽取燃油并输送到发动机。虽然机械燃油泵在现代汽车中使用较少,但真空泵在某些特殊应用中仍有使用。

6.发动机管理系统:真空泵用于发动机管理系统的各种功能。它们协助操作真空执行器、真空贮液器和真空传感器等部件。这些部件在发动机性能、排放控制和整个系统功能方面发挥着作用。

7.流体控制系统:真空泵用于汽车内的流体控制系统,如动力转向系统。真空辅助动力转向系统利用真空压力来协助驾驶员转向,从而减少所需的力度。真空泵为动力转向助力提供必要的真空,从而提高操纵性和驾驶舒适性。

8.诊断和测试设备:汽车诊断和测试设备中也使用真空泵。这些泵可产生测试和诊断各种汽车系统(如进气歧管泄漏、制动系统完整性和真空操作部件)所需的真空条件。

值得注意的是,根据具体的汽车应用,可能会使用不同类型的真空泵。汽车行业常用的真空泵技术包括隔膜泵、旋片泵和电动真空泵。

总之,真空泵在汽车工业中应用广泛,从制动系统和排放控制到 HVAC 系统和发动机管理,无所不包。它们有助于提高安全性、燃油效率、环保性能和车辆的整体功能。

真空泵

What Is the Difference Between Dry and Wet Vacuum Pumps?

Dry and wet vacuum pumps are two distinct types of pumps that differ in their operating principles and applications. Here’s a detailed explanation of the differences between them:

Dry Vacuum Pumps:

Dry vacuum pumps operate without the use of any lubricating fluid or sealing water in the pumping chamber. They rely on non-contact mechanisms to create a vacuum. Some common types of dry vacuum pumps include:

1. Rotary Vane Pumps: Rotary vane pumps consist of a rotor with vanes that slide in and out of slots in the rotor. The rotation of the rotor creates chambers that expand and contract, allowing the gas to be pumped. The vanes and the housing are designed to create a seal, preventing gas from flowing back into the pump. Rotary vane pumps are commonly used in laboratories, medical applications, and industrial processes where a medium vacuum level is required.

2. Dry Screw Pumps: Dry screw pumps use two or more intermeshing screws to compress and transport gas. As the screws rotate, the gas is trapped between the threads and transported from the suction side to the discharge side. Dry screw pumps are known for their high pumping speeds, low noise levels, and ability to handle various gases. They are used in applications such as semiconductor manufacturing, chemical processing, and vacuum distillation.

3. Claw Pumps: Claw pumps use two rotors with claw-shaped lobes that rotate in opposite directions. The rotation creates a series of expanding and contracting chambers, enabling gas capture and pumping. Claw pumps are known for their oil-free operation, high pumping speeds, and suitability for handling dry and clean gases. They are commonly used in applications such as automotive manufacturing, food packaging, and environmental technology.

Wet Vacuum Pumps:

Wet vacuum pumps, also known as liquid ring pumps, operate by using a liquid, typically water, to create a seal and generate a vacuum. The liquid ring serves as both the sealing medium and the working fluid. Wet vacuum pumps are commonly used in applications where a higher level of vacuum is required or when handling corrosive gases. Some key features of wet vacuum pumps include:

1. Liquid Ring Pumps: Liquid ring pumps feature an impeller with blades that rotate eccentrically within a cylindrical casing. As the impeller rotates, the liquid forms a ring against the casing due to centrifugal force. The liquid ring creates a seal, and as the impeller spins, the volume of the gas chamber decreases, leading to the compression and discharge of gas. Liquid ring pumps are known for their ability to handle wet and corrosive gases, making them suitable for applications such as chemical processing, oil refining, and wastewater treatment.

2. Water Jet Pumps: Water jet pumps utilize a jet of high-velocity water to create a vacuum. The water jet entrains gases, and the mixture is then separated in a venturi section, where the water is recirculated, and the gases are discharged. Water jet pumps are commonly used in laboratories and applications where a moderate vacuum level is required.

The main differences between dry and wet vacuum pumps can be summarized as follows:

1. Operating Principle: Dry vacuum pumps operate without the need for any sealing fluid, while wet vacuum pumps utilize a liquid ring or water as a sealing and working medium.

2. Lubrication: Dry vacuum pumps do not require lubrication since there is no contact between moving parts, whereas wet vacuum pumps require the presence of a liquid for sealing and lubrication.

3. Applications: Dry vacuum pumps are suitable for applications where a medium vacuum level is required, and oil-free operation is desired. They are commonly used in laboratories, medical settings, and various industrial processes. Wet vacuum pumps, on the other hand, are used when a higher vacuum level is needed or when handling corrosive gases. They find applications in chemical processing, oil refining, and wastewater treatment, among others.

It’s important to note that the selection of a vacuum pump depends on specific requirements such as desired vacuum level, gas compatibility, operating conditions, and the nature of the application.

In summary, the primary distinction between dry and wet vacuum pumps lies in their operating principles, lubrication requirements, and applications. Dry vacuum pumps operate without any lubricating fluid, while wet vacuum pumps rely on a liquid ring or water for sealing and lubrication. The choice between dry and wet vacuum pumps depends on the specific needs of the application and the desired vacuum level.

真空泵

Are There Different Types of Vacuum Pumps Available?

Yes, there are various types of vacuum pumps available, each designed to suit specific applications and operating principles. Here’s a detailed explanation:

Vacuum pumps are classified based on their operating principles, mechanisms, and the type of vacuum they can generate. Some common types of vacuum pumps include:

1. Rotary Vane Vacuum Pumps:

– Description: Rotary vane pumps are positive displacement pumps that use rotating vanes to create a vacuum. The vanes slide in and out of slots in the pump rotor, trapping and compressing gas to create suction and generate a vacuum.

– Applications: Rotary vane vacuum pumps are widely used in applications requiring moderate vacuum levels, such as laboratory vacuum systems, packaging, refrigeration, and air conditioning.

2. Diaphragm Vacuum Pumps:

– Description: Diaphragm pumps use a flexible diaphragm that moves up and down to create a vacuum. The diaphragm separates the vacuum chamber from the driving mechanism, preventing contamination and oil-free operation.

– Applications: Diaphragm vacuum pumps are commonly used in laboratories, medical equipment, analysis instruments, and applications where oil-free or chemical-resistant vacuum is required.

3. Scroll Vacuum Pumps:

– Description: Scroll pumps have two spiral-shaped scrolls—one fixed and one orbiting—which create a series of moving crescent-shaped gas pockets. As the scrolls move, gas is continuously trapped and compressed, resulting in a vacuum.

– Applications: Scroll vacuum pumps are suitable for applications requiring a clean and dry vacuum, such as analytical instruments, vacuum drying, and vacuum coating.

4. Piston Vacuum Pumps:

– Description: Piston pumps use reciprocating pistons to create a vacuum by compressing gas and then releasing it through valves. They can achieve high vacuum levels but may require lubrication.

– Applications: Piston vacuum pumps are used in applications requiring high vacuum levels, such as vacuum furnaces, freeze drying, and semiconductor manufacturing.

5. Turbo Molecular Vacuum Pumps:

– Description: Turbo pumps use high-speed rotating blades or impellers to create a molecular flow, continuously pumping gas molecules out of the system. They typically require a backing pump to operate.

– Applications: Turbo molecular pumps are used in high vacuum applications, such as semiconductor fabrication, research laboratories, and mass spectrometry.

6. Diffusion Vacuum Pumps:

– Description: Diffusion pumps rely on the diffusion of gas molecules and their subsequent removal by a high-speed jet of vapor. They operate at high vacuum levels and require a backing pump.

– Applications: Diffusion pumps are commonly used in applications requiring high vacuum levels, such as vacuum metallurgy, space simulation chambers, and particle accelerators.

7. Cryogenic Vacuum Pumps:

– Description: Cryogenic pumps use extremely low temperatures to condense and capture gas molecules, creating a vacuum. They rely on cryogenic fluids, such as liquid nitrogen or helium, for operation.

– Applications: Cryogenic vacuum pumps are used in ultra-high vacuum applications, such as particle physics research, material science, and fusion reactors.

These are just a few examples of the different types of vacuum pumps available. Each type has its advantages, limitations, and suitability for specific applications. The choice of vacuum pump depends on factors like required vacuum level, gas compatibility, reliability, cost, and the specific needs of the application.

中国工厂液环真空泵(2BE4526)真空泵发动机	中国工厂液环真空泵(2BE4526)真空泵发动机
editor by CX 2024-04-15

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