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China Professional CHINAMFG Series Double Stage Rotary Vane Vacuum Pump vacuum pump oil near me

Описание товара

Pump character:

1: Double stage and high speed directly connected structure.

2: Equipped with specially designed air ballast valve to prevent water mixing with oil pump and prolong pump working time.

3: Adopt international similar product design,small size,light weight,low noise,easy to start,long time stable operation.

4: No oil leakage, no oil injection and environmentally friendly.

5: The pump can be used as a suction pump alone, also can be used as a backing pump for booster pump, diffusion pump and molecular pump,also can be used as maintenance pump or forepump in the system.

6: It is widely used in the electric vacuum device manufacturing industry, refrigeration industry, medical analysis device industry, solar energy industry, electric light source industry, vacuum CHINAMFG industry and scientific research unit.

Pump specifications:

Application:
 
1. The pump is 1 of the basic equipments to exhaust a sealed vessel. It can be used either independently as main and can also be served as forepump for booster pump diffusion pump and molecular pump or as holding pump for a vacuum system and as a pre-pumping for different kinds of the pumps. So that is can be applied in electro-vacuum industries, vacuum flask manufacturing, vacuum welding and as an accessory to those fine gauges or CHINAMFG where vacuum is required .It is more suitable for laboratory use because of its small size ,less weight and quiet operation .

2.The pump is allowed to work continuously for many hours at a stretch under atmospheric temperature of 5ºC-40ºC and intake pressure below 1230pa.While the pumped gas containing moisture of a relative humidity of more than 90% gas-ballast valve should be open.

3. Whit the inlet port widely opened to atmosphere the pump is not allowed to work more than 1 minute.

4.The pump is not suitable for pumping over-oxidized, poison, explosive and corrosive gas as well as gases which react chemically with the pump oil contain particles of dust.

Company power:

Our services:

Pre-Sales Service

  1. Provide 24-hour reply.

  2. Provide suitable models according to clients’ requirements.

  3. Provide detailed product specifications and reasonal prices. 

In-Sales Service

  1. Supervise whole production time. 

  2. Provide product’s testing performance curve to customers.

  3. Provide inspection pictures to customers after we finish production.

After-Sales Service

  1. Provide installation manual.

  2. Under correct installation, normal maintenance and using,we guarantee one-year warranty.

  3. If product has malfunction,we’ll reply you within 24 hour and provide solution or even send technical staff to spot after receiving maintenance notification.
     

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Acting Form: Double-Acting
Type: Vane Pump
Displacement: Variable Pump
Performance: Health
Сертификация: CE, ISO
Product Name: Bdr Series Double Stage Rotary Vane Vacuum Pump
Персонализация:
Доступно

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вакуумный насос

Как обслуживать и устранять неисправности вакуумных насосов?

Техническое обслуживание и устранение неисправностей вакуумных насосов необходимо для обеспечения их оптимальной производительности и долговечности. Вот подробное объяснение:

Обслуживание вакуумных насосов:

1. Регулярный осмотр: Регулярно проводите визуальный осмотр насоса на предмет наличия признаков повреждений, утечек или ненормального износа. Осмотрите двигатель, ремни, муфты и другие компоненты на предмет правильного выравнивания и состояния.

2. Смазка: Следуйте рекомендациям производителя по смазке. Некоторые вакуумные насосы требуют регулярной замены масла или смазки движущихся частей. Убедитесь, что используется правильный тип и количество смазочного материала.

3. Проверка уровня масла: Следите за уровнем масла в насосах с масляным уплотнением и поддерживайте его в рекомендуемом диапазоне. Добавляйте или заменяйте масло по мере необходимости, следуя инструкциям производителя.

4. Обслуживание фильтров: Регулярно очищайте или заменяйте фильтры, чтобы предотвратить их засорение и обеспечить надлежащий поток воздуха. Засоренные фильтры могут ухудшить работу насоса и увеличить потребление энергии.

5. Система охлаждения: Если вакуумный насос оснащен системой охлаждения, регулярно проверяйте ее на чистоту и исправность. При необходимости очищайте или заменяйте компоненты системы охлаждения, чтобы предотвратить перегрев.

6. Уплотнения и прокладки: Проверьте уплотнения и прокладки на наличие признаков износа или утечки. Незамедлительно замените все поврежденные или изношенные уплотнения, чтобы сохранить герметичность.

7. Обслуживание клапанов: Если вакуумный насос оснащен клапанами, регулярно осматривайте и чистите их, чтобы обеспечить правильную работу и предотвратить засорение.

8. Вибрация и шум: Следите за насосом на предмет чрезмерной вибрации или необычного шума, которые могут указывать на несоосность, износ подшипников или другие механические проблемы. Незамедлительно устраните эти проблемы, чтобы предотвратить дальнейшее повреждение.

Устранение неисправностей вакуумного насоса:

1. Недостаточный уровень вакуума: Если насос не достигает требуемого уровня вакуума, проверьте, нет ли утечек в системе, неправильного уплотнения или изношенных уплотнений. Осмотрите клапаны, соединения и уплотнения на предмет утечек и при необходимости отремонтируйте или замените их.

2. Низкая производительность: Если насос не обеспечивает достаточной производительности, проверьте, не засорились ли фильтры, нет ли недостаточной смазки или не износились ли детали. При необходимости очистите или замените фильтры, обеспечьте надлежащую смазку и замените изношенные детали.

3. Перегрев: Если насос перегревается, проверьте систему охлаждения на наличие засоров или недостаточного потока воздуха. Очистите или замените компоненты системы охлаждения и обеспечьте надлежащую вентиляцию вокруг насоса.

4. Чрезмерный шум или вибрация: Чрезмерный шум или вибрация могут указывать на несоосность, износ подшипников или другие механические проблемы. Осмотрите и отремонтируйте или замените поврежденные или изношенные детали. Обеспечьте правильное выравнивание и баланс вращающихся компонентов.

5. Проблемы с двигателем: Если двигатель насоса не запускается или работает нестабильно, проверьте источник питания, электрические соединения и компоненты двигателя. Проверьте двигатель с помощью соответствующего электротехнического оборудования и при необходимости обратитесь к электрику или специалисту по двигателям.

6. Чрезмерное потребление масла: Если насос потребляет масло с высокой скоростью, проверьте наличие утечек или других проблем, которые могут быть причиной потери масла. Осмотрите уплотнения, прокладки и соединения на предмет утечек и при необходимости выполните ремонт.

7. Ненормальные запахи: Необычные запахи, например запах гари, могут свидетельствовать о перегреве или других механических проблемах. Незамедлительно устраните проблему и при необходимости обратитесь к техническому специалисту.

8. Рекомендации производителя: Всегда обращайтесь к руководствам и рекомендациям производителя по техническому обслуживанию и устранению неисправностей, характерных для вашей модели вакуумного насоса. Следуйте предписанному графику технического обслуживания и при необходимости обращайтесь за профессиональной помощью.

Соблюдая надлежащие процедуры технического обслуживания и своевременно устраняя любые неполадки, вы сможете обеспечить надежную работу и долговечность вашего вакуумного насоса.

вакуумный насос

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.

вакуумный насос

What Is a Vacuum Pump, and How Does It Work?

A vacuum pump is a mechanical device used to create and maintain a vacuum or low-pressure environment within a closed system. Here’s a detailed explanation:

A vacuum pump operates on the principle of removing gas molecules from a sealed chamber, reducing the pressure inside the chamber to create a vacuum. The pump accomplishes this through various mechanisms and techniques, depending on the specific type of vacuum pump. Here are the basic steps involved in the operation of a vacuum pump:

1. Sealed Chamber:

The vacuum pump is connected to a sealed chamber or system from which air or gas molecules need to be evacuated. The chamber can be a container, a pipeline, or any other enclosed space.

2. Inlet and Outlet:

The vacuum pump has an inlet and an outlet. The inlet is connected to the sealed chamber, while the outlet may be vented to the atmosphere or connected to a collection system to capture or release the evacuated gas.

3. Mechanical Action:

The vacuum pump creates a mechanical action that removes gas molecules from the chamber. Different types of vacuum pumps use various mechanisms for this purpose:

– Positive Displacement Pumps: These pumps physically trap gas molecules and remove them from the chamber. Examples include rotary vane pumps, piston pumps, and diaphragm pumps.

– Momentum Transfer Pumps: These pumps use high-speed jets or rotating blades to transfer momentum to gas molecules, pushing them out of the chamber. Examples include turbomolecular pumps and diffusion pumps.

– Entrapment Pumps: These pumps capture gas molecules by adsorbing or condensing them on surfaces or in materials within the pump. Cryogenic pumps and ion pumps are examples of entrainment pumps.

4. Gas Evacuation:

As the vacuum pump operates, it creates a pressure differential between the chamber and the pump. This pressure differential causes gas molecules to move from the chamber to the pump’s inlet.

5. Exhaust or Collection:

Once the gas molecules are removed from the chamber, they are either exhausted into the atmosphere or collected and processed further, depending on the specific application.

6. Pressure Control:

Vacuum pumps often incorporate pressure control mechanisms to maintain the desired level of vacuum within the chamber. These mechanisms can include valves, regulators, or feedback systems that adjust the pump’s operation to achieve the desired pressure range.

7. Monitoring and Safety:

Vacuum pump systems may include sensors, gauges, or indicators to monitor the pressure levels, temperature, or other parameters. Safety features such as pressure relief valves or interlocks may also be included to protect the system and operators from overpressure or other hazardous conditions.

It’s important to note that different types of vacuum pumps have varying levels of vacuum they can achieve and are suitable for different pressure ranges and applications. The choice of vacuum pump depends on factors such as the required vacuum level, gas composition, pumping speed, and the specific application’s requirements.

In summary, a vacuum pump is a device that removes gas molecules from a sealed chamber, creating a vacuum or low-pressure environment. The pump accomplishes this through mechanical actions, such as positive displacement, momentum transfer, or entrapment. By creating a pressure differential, the pump evacuates gas from the chamber, and the gas is either exhausted or collected. Vacuum pumps play a crucial role in various industries, including manufacturing, research, and scientific applications.

China Professional CHINAMFG Series Double Stage Rotary Vane Vacuum Pump   vacuum pump oil near me		China Professional CHINAMFG Series Double Stage Rotary Vane Vacuum Pump   vacuum pump oil near me
editor by CX 2023-12-18

Почта: Sales@china-vacuum-pumps.com

Профессиональное производство вакуумных насосов Рутса, пластинчато-роторных насосов, роторно-поршневых насосов, жидкостно-кольцевых вакуумных насосов, безмасляных воздушных компрессоров, винтовых компрессоров, спиральных компрессоров, производителей и поставщиков.

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