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China Best Sales Mechanical Seal Pump Liquid Ring Vacuum Pump vacuum pump brakes

Descrição do produto

SK-A Series Liquid ring vacuum pump 
 
SK-A series vacuum pumps are based on SK vacuum pump ,which designed according to plastic machine industry special needs.This kind of pump have solved the problems that when absorbing lots of water,can not work continuously;when scaling seriously for hard water,can not start beause of stopping working for a long time.And widely used on tubing machine and molding machine.Items:SK-0.15A SK-0.3A,SK-0.5A SK-0.8A,SK-1.2A ,SK-2A ,SK-3A.Motor power from 0.55~5.5KW ;Capacity:0.15~3M3/min,Ultimate vacuum:-0.095MPa.

single stage water ring vacuum pump.
The vacuum pump can be used on plastic Pipe/profile extrusion line.
It is designed specially for the use of plastics industry

Our advantage: 

Single stage, Threaded connection

With coating disposal inside the pump body to avoid scaling and have longer lifetime. 

Double sealed: Mechanical sealed and oil sealed

Can work continuously and can start when stopping for long time

 

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Óleo ou não: Water
Estrutura: Bomba de vácuo rotativa
Método do exaustor: Positive Displacement Pump
Grau de vácuo: Low Vacuum
Work Function: Pump Air
Working Conditions: Atmospheric Temperature
Personalização:
Disponível

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bomba de vácuo

How Are Vacuum Pumps Employed in the Production of Electronic Components?

Vacuum pumps play a crucial role in the production of electronic components. Here’s a detailed explanation:

The production of electronic components often requires controlled environments with low or no atmospheric pressure. Vacuum pumps are employed in various stages of the production process to create and maintain these vacuum conditions. Here are some key ways in which vacuum pumps are used in the production of electronic components:

1. Deposition Processes: Vacuum pumps are extensively used in deposition processes, such as physical vapor deposition (PVD) and chemical vapor deposition (CVD), which are commonly employed for thin film deposition on electronic components. These processes involve the deposition of materials onto substrates in a vacuum chamber. Vacuum pumps help create and maintain the necessary vacuum conditions required for precise and controlled deposition of the thin films.

2. Etching and Cleaning: Etching and cleaning processes are essential in the fabrication of electronic components. Vacuum pumps are used to create a vacuum environment in etching and cleaning chambers, where reactive gases or plasmas are employed to remove unwanted materials or residues from the surfaces of the components. The vacuum pumps help evacuate the chamber and ensure the efficient removal of byproducts and waste gases.

3. Drying and Bake-out: Vacuum pumps are utilized in the drying and bake-out processes of electronic components. After wet processes, such as cleaning or wet etching, components need to be dried thoroughly. Vacuum pumps help create a vacuum environment that facilitates the removal of moisture or solvents from the components, ensuring their dryness before subsequent processing steps. Additionally, vacuum bake-out is employed to remove moisture or other contaminants trapped within the components’ materials or structures, enhancing their reliability and performance.

4. Encapsulation and Packaging: Vacuum pumps are involved in the encapsulation and packaging stages of electronic component production. These processes often require the use of vacuum-sealed packaging to protect the components from environmental factors such as moisture, dust, or oxidation. Vacuum pumps assist in evacuating the packaging materials, creating a vacuum-sealed environment that helps maintain the integrity and longevity of the electronic components.

5. Testing and Quality Control: Vacuum pumps are utilized in testing and quality control processes for electronic components. Some types of testing, such as hermeticity testing, require the creation of a vacuum environment for evaluating the sealing integrity of electronic packages. Vacuum pumps help evacuate the testing chambers, ensuring accurate and reliable test results.

6. Soldering and Brazing: Vacuum pumps play a role in soldering and brazing processes for joining electronic components and assemblies. Vacuum soldering is a technique used to achieve high-quality solder joints by removing air and reducing the risk of voids, flux residuals, or oxidation. Vacuum pumps assist in evacuating the soldering chambers, creating the required vacuum conditions for precise and reliable soldering or brazing.

7. Surface Treatment: Vacuum pumps are employed in surface treatment processes for electronic components. These processes include plasma cleaning, surface activation, or surface modification techniques. Vacuum pumps help create the necessary vacuum environment where plasma or reactive gases are used to treat the component surfaces, improving adhesion, promoting bonding, or altering surface properties.

It’s important to note that different types of vacuum pumps may be used in electronic component production, depending on the specific process requirements. Commonly used vacuum pump technologies include rotary vane pumps, turbo pumps, cryogenic pumps, and dry pumps.

In summary, vacuum pumps are essential in the production of electronic components, facilitating deposition processes, etching and cleaning operations, drying and bake-out stages, encapsulation and packaging, testing and quality control, soldering and brazing, as well as surface treatment. They enable the creation and maintenance of controlled vacuum environments, ensuring precise and reliable manufacturing processes for electronic components.

bomba de vácuo

As bombas a vácuo podem ser usadas para a remediação do solo e da água subterrânea?

As bombas de vácuo são, de fato, amplamente utilizadas para a remediação de solos e águas subterrâneas. Aqui está uma explicação detalhada:

A remediação do solo e da água subterrânea refere-se ao processo de remoção de contaminantes do solo e da água subterrânea para restaurar a qualidade ambiental e proteger a saúde humana. As bombas de vácuo desempenham um papel crucial em várias técnicas de remediação, facilitando a extração e o tratamento de meios contaminados. Algumas das aplicações comuns das bombas de vácuo na remediação do solo e da água subterrânea incluem:

1. Extração de vapor do solo (SVE): A extração de vapor do solo é uma técnica de remediação amplamente utilizada para contaminantes voláteis presentes na subsuperfície. Ela envolve a extração de vapores do solo aplicando um vácuo na subsuperfície por meio de poços ou trincheiras. As bombas de vácuo criam um gradiente de pressão que induz o movimento dos vapores em direção aos pontos de extração. Os vapores extraídos são então tratados para remover ou destruir os contaminantes. As bombas de vácuo desempenham um papel fundamental na SVE, mantendo a pressão negativa necessária para aumentar a volatilização e a extração de contaminantes do solo.

2. Extração de fase dupla (DPE): A extração de fase dupla é um método de remediação usado para a extração simultânea de líquidos (como água subterrânea) e vapores (como compostos orgânicos voláteis) da subsuperfície. Bombas de vácuo são utilizadas para criar vácuo em poços ou pontos de extração, extraindo as fases líquida e de vapor. A água subterrânea e os vapores extraídos são então separados e tratados adequadamente. As bombas de vácuo são essenciais nos sistemas DPE para a extração eficiente e controlada de contaminantes nas fases líquida e de vapor.

3. Bombeamento e tratamento de águas subterrâneas: As bombas a vácuo também são empregadas na remediação de águas subterrâneas por meio do processo de bombeamento e tratamento. Elas são usadas para extrair águas subterrâneas contaminadas de poços ou trincheiras de recuperação. Ao criar um vácuo ou pressão negativa, as bombas de vácuo facilitam o fluxo da água subterrânea em direção aos pontos de extração. A água subterrânea extraída é então tratada para remover ou neutralizar os contaminantes antes de ser descarregada ou reinjetada no solo. As bombas de vácuo desempenham um papel fundamental na manutenção das taxas de fluxo e dos gradientes hidráulicos necessários para a extração e o tratamento eficazes das águas subterrâneas.

4. Pulverização de ar: A aspersão de ar é uma técnica de remediação usada para tratar águas subterrâneas e solos contaminados com compostos orgânicos voláteis (VOCs). Ela envolve a injeção de ar ou oxigênio na subsuperfície para aumentar a volatilização dos contaminantes. Bombas de vácuo são utilizadas em sistemas de aspersão de ar para criar uma zona de vácuo ou pressão negativa em poços ou pontos ao redor da área contaminada. Isso induz o movimento do ar e do oxigênio pelo solo, facilitando a liberação e a volatilização dos VOCs. As bombas de vácuo são essenciais na aspersão de ar, pois mantêm o gradiente de pressão negativa necessário para a remoção eficaz de contaminantes.

5. Recuperação aprimorada a vácuo: A recuperação aprimorada a vácuo, também conhecida como extração aprimorada a vácuo, é uma técnica de remediação usada para recuperar líquidos em fase não aquosa (NAPLs) ou líquidos densos em fase não aquosa (DNAPLs) da subsuperfície. Bombas de vácuo são empregadas para criar um vácuo ou gradiente de pressão negativa em poços ou trincheiras de recuperação. Isso estimula o movimento e a extração de NAPLs ou DNAPLs em direção aos pontos de recuperação. As bombas de vácuo facilitam a recuperação eficiente desses contaminantes densos, que podem não ser facilmente recuperáveis usando métodos de bombeamento tradicionais.

É importante observar que diferentes tipos de bombas de vácuo, como bombas de palhetas rotativas, bombas de anel líquido ou bombas resfriadas a ar, podem ser usadas na remediação de solos e águas subterrâneas, dependendo dos requisitos específicos da técnica de remediação e da natureza dos contaminantes.

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.

bomba de vácuo

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.

China Best Sales Mechanical Seal Pump Liquid Ring Vacuum Pump   vacuum pump brakesChina Best Sales Mechanical Seal Pump Liquid Ring Vacuum Pump   vacuum pump brakes
editor by CX 2024-04-11

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