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China Good quality Stainless Steel Two Stage Vacuum Pump Lobe Rotary Piston Pump Gear Rotary Oil Pump with Moving Wheel Cart a/c vacuum pump

Product Description

21 Years Of Experience. 3-7 days delivery, 3 Years Warranty , Reasonable Price And Best Service, CE Certificated Products. Advanced Technology. Please contact us for the offer.

 

 

Product Description

Description:

 

Rotary lobe pumps are positive-displacement type pumps that use 2 or more lobes rotating around parallel shafts in the pump’s body to move liquids. They are widely used in the hygienic processing industries, including food & beverage processing and biopharmaceutical manufacturing.

 

Working Principle of Rotary Lobe Pump:

The rotary lobe pumps, we also called them lobe rotor pumps. They are 1 popular transfer pump to conveying the food, beverage, pulp and paper, chemical, pharmaceutical and so on. The rotor lobe pump relies on 2 synchronously rotating rotors that generate suction (vacuum) at the inlet during the rotation. Thereby sucking in the material to be conveyed. Both rotors split the rotor chamber into different spaces. Then operate in the order of 1-2-3-4. The medium is delivered to the discharge port. In this cycle, the medium (material) is continuously transported out by the source.

Different Kind of Lobe Options for the Rotor Lobe Pump

1. Single Lobed Rotor: More suitable for conveying media which containing large granular materials. The breaking rate of large granular materials is low. But on other hand it is not popular 1 for used, Because its pulsation is large and pressure is low, also the volume is small for the space of transferred materials.

2. Two-Lobed Rotor (Butterfly Rotor) More suitable for conveying media which containing small and medium-size granular materials. The breaking rate to these materials is low and getting slightly pulsating. The volume is a little less than the three-lobed rotor for the space of transferred materials.

3. Three-Lobed Rotor It is widely used in 1 rotor. The volume is bigger than other type of rotors for the space of transferred materials. Also, each performance is higher than other rotors. Just, it has a certain rate of breakage to the particulate materials on the transport way.

4. Multi-Lobed Rotor(4-12) The volume is smaller for the space of transferred materials and breaking rate higher when the quantity of rotary vane of rotor be increased, Just the transport way more stable.

Character:

1,There Is A Certain Gap Between Rotor And Rotor, No Friction Coefficient, So Pump Have A Long Service Life Time.
2, It Is Easy To Install And Disassemble, And It Is Convenient To Maintain, clean . There Is Less Wearing Parts.
3, High Efficiency And Energy Saving, Stable Transportation, Low Failure Rate, No Leak Sealing And Low Noise.
4, The Viscosity Of The Transportable Medium Is, ≤2000000 CP, And The Pump Can Transfer Slurry Containing 70% Solids.
5, It Can Transport Gas, Liquid And CHINAMFG Three-Phase Mixture Materials.
6, With FD, The Flow Can Be Adjusted At Will, And The Pump Can Be Used As A General Metering Pump.
7, If you need, We Can Do The Pump With Heating Jacket.
8, Applicable Temperature: -50 °C, -250 °C.
9, Types Of Inlet/Outlet Connection: Flange Joint, Threaded Connection; Quick Connection.
10,Seal Type: Mechanical Seal And Packing Seal.

Lobe Pump Scope Of Application.

Dairy Products: Yogurt, Cream, Ice Cream, Cheese And Whey.
Beverages: Beer, Wort, Yeast, Soft Drinks, Fruit Concentrates, Fruit Drinks.
Food: Tomato Sauce, Vegetable Paste, Seasoning, Sweeteners, Yeast Paste, Salad, Meat Emulsion, Edible Oil.
Candy: Syrup, Cream Stuffing, Fruit Purée, Fruit Filling, Pudding, Jam, Jelly, Chocolate.
Cosmetics: Creams And Lotions, Hair Gels, Hair Dyes, Essential Oils.
Drugs: Pill, Extract, Emulsion, Paste.
Chemicals: Fats, Solvents, Resins And Polymers, dyes…

 

ADVANTAGES OF ROTARY LOBE PUMPS
 

Since the pump’s lobes do not come into contact with each other, lobe pumps can move solids suspended in slurries (such as cherries or olives in food processing applications) without product damage. The gentle pump action further minimizes product degradation. Can handle larger sized particles than may be pumped with other types of positive displacement pumps. It may be easily cleaned using either clean-in-place (CIP) or steam-in-place (SIP) methods, making them ideal for hygienic processing applications. Highly efficient for pumping very viscous liquids. Offer accurate and consistent fluid output that is unaffected by changes in head pressure, assuming sufficient fluid viscosity. The fluid flow can be increased or decreased by controlling the drive speed. If wetted, rotary lobe pumps are also self-priming, and can run dry for long periods of time (assuming the pump’s seals are lubricated). Generally easy to maintain.
 

Product Name:

Sanitary Stainless Steel Rotor Rotary Lobe Pump 

Description:

Designed according to 3A standard, widely used for transfer viscous media in the food-processing, cosemtics and pharmaceutical
industries.

Construction:

Horizontal Ace series, diffirent rotor shapes(single rotro,tri-lobe rotors and butterfly type rotors)

Material:

SS304/SS316

Seal Material:

CHINAMFG (Standard, approval)

Max. Flow:

43000Liter/h

Max.pressure:

10bar

Speed

1-1000 rmp

Rotor Type:

2-leaves, 3-leaves, butterfly, signal butterfly

Mechanical seal:

SIC/SiC/EPDM(Standard)

Motor power:

0.75kw, 1.1kw, 1.5kw, 2.2kw, 3kw, …22KW

Sealing option:

Sanitary single mechanical seal/Double mechanical seal with cooling system

Voltage:

220V, 380V(110-480v)

Motor:

ABB, Siemens,Our Domestic Brand,50hz/ 60hz

Surface treatment:

Inner polished and Sandblast outside

connection:

Clamp, Thread, weld, Flange

Availably standard:

DIN, SMS, 3A, RJT, ISO/IDF

Operated:

Electic

Application scope:

Dairy, food, beverage, pharmacy, cosmetic, etc

Packaging Details:

Plywood case

Delivery details:

Usually within1-7 days after receiving T/T down payment

We can customize the Lobe Pump according to customer requirements.

Technical Parameters

Model

Capacity/Per centum rotate (L)

Speed(RPM)

Flow(L/H)

Power(KW)

ACE-3R

3L

100-500

300-800

0.55

ACE-6R

6L

100-500

650-1600

0.75

ACE-8R

8L

100-500

850-2160

1.5

ACE-12R

12L

100-500

1300-3200

2.2

ACE-20R

20L

100-500

2100-5400

3

ACE-30R

30L

100-500

3200-6400

4

ACE-36R

36L

100-500

3800-7600

4

ACE-52R

52L

100-500

5600-11000

5.5

ACE-66R

66L

100-500

7100-14000

7.5

ACE-78R

78L

100-500

9000-18000

7.5

ACE-100R

100L

100-500

11000-22000

11

ACE-135R

135L

100-500

15000-30000

15

ACE-160R

160L

100-500

17000-34000

18.5

ACE-200R

200L

100-500

21600-43000

22

 

Detailed Photos

 

Packaging & Shipping

 

Other pumps

 

Certifications

FAQ

 

Q1. What is your terms of packing?
A: Generally, we pack our goods in plywood case or carton package for small parts.
If you have legally registered patent, we can pack the goods in your branded boxes after getting your authorization letters.

Q2. What is your terms of payment?
A: T/T in advance, 30% as deposit, and finish 70% balance payment before delivery.
We’ll show you the photos of the products and packages before you pay the balance.

Q3. What is your terms of delivery?
A: EXW, FOB, CIF, DDU.

Q4. How about your delivery time?
A: Generally, it will take 3 to 4 weeks after receiving your advance payment. The specific delivery time depends
on the items and the quantity of your order.

Q5. Can you produce according to the samples?
A: Yes, we can produce by your samples or technical drawings.

Q6.Do you test all your goods before delivery?
A: Yes, we have 100% test before delivery

Q7: How do you make our business long-term and good relationship?
A:1. We keep good quality and competitive price to ensure our customers benefit ;
    2. We respect every customer as our friend and we sincerely do business and make friends with them, no matter where they come from.
 

 

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After-sales Service: Video Technical Support, Online Support
Warranty: 2 Years
Mesh Form: External Engaged
Tooth Flank: Stainless Steel Rotary Lobe
Tooth Curve: Stainless Steel Rotary Lobe
Power: Electric
Samples:
US$ 850/Set
1 Set(Min.Order)

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Customization:
Available

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vacuum pump

What Is the Role of Vacuum Pumps in Semiconductor Manufacturing?

Vacuum pumps play a critical role in semiconductor manufacturing processes. Here’s a detailed explanation:

Semiconductor manufacturing involves the production of integrated circuits (ICs) and other semiconductor devices used in various electronic applications. Vacuum pumps are used extensively throughout the semiconductor manufacturing process to create and maintain the required vacuum conditions for specific manufacturing steps.

Here are some key roles of vacuum pumps in semiconductor manufacturing:

1. Deposition Processes: Vacuum pumps are used in deposition processes such as physical vapor deposition (PVD) and chemical vapor deposition (CVD). These processes involve depositing thin films of materials onto semiconductor wafers to create various layers and patterns. Vacuum pumps help create a low-pressure environment necessary for precise control of the deposition process, ensuring uniform and high-quality film formation.

2. Etching and Cleaning: Vacuum pumps are utilized in etching and cleaning processes, which involve the removal of specific layers or contaminants from semiconductor wafers. Dry etching techniques, such as plasma etching and reactive ion etching, require a vacuum environment to facilitate the ionization and removal of material. Vacuum pumps aid in creating the necessary low-pressure conditions for efficient etching and cleaning processes.

3. Ion Implantation: Ion implantation is a process used to introduce impurities into specific regions of a semiconductor wafer to modify its electrical properties. Vacuum pumps are used to evacuate the ion implantation chamber, creating the required vacuum environment for accurate and controlled ion beam acceleration and implantation.

4. Wafer Handling and Transfer: Vacuum pumps are employed in wafer handling and transfer systems. These systems utilize vacuum suction to securely hold and manipulate semiconductor wafers during various manufacturing steps, such as loading and unloading from process chambers, robotic transfer between tools, and wafer alignment.

5. Load Lock Systems: Load lock systems are used to transfer semiconductor wafers between atmospheric conditions and the vacuum environment of process chambers. Vacuum pumps are integral components of load lock systems, creating and maintaining the vacuum conditions necessary for wafer transfer while minimizing contamination risks.

6. Metrology and Inspection: Vacuum pumps are utilized in metrology and inspection tools used for characterizing semiconductor devices. These tools, such as scanning electron microscopes (SEMs) and focused ion beam (FIB) systems, often operate in a vacuum environment to enable high-resolution imaging and accurate analysis of semiconductor structures and defects.

7. Leak Detection: Vacuum pumps are employed in leak detection systems to identify and locate leaks in vacuum chambers, process lines, and other components. These systems rely on vacuum pumps to evacuate the system and then monitor for any pressure rise, indicating the presence of leaks.

8. Cleanroom Environment Control: Semiconductor manufacturing facilities maintain cleanroom environments to prevent contamination during the fabrication process. Vacuum pumps are used in the design and operation of the cleanroom ventilation and filtration systems, helping to maintain the required air cleanliness levels by removing particulates and maintaining controlled air pressure differentials.

Vacuum pumps used in semiconductor manufacturing processes are often specialized to meet the stringent requirements of the industry. They need to provide high vacuum levels, precise control, low contamination levels, and reliability for continuous operation.

Overall, vacuum pumps are indispensable in semiconductor manufacturing, enabling the creation of the necessary vacuum conditions for various processes, ensuring the production of high-quality semiconductor devices.

vacuum pump

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.

vacuum pump

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 Good quality Stainless Steel Two Stage Vacuum Pump Lobe Rotary Piston Pump Gear Rotary Oil Pump with Moving Wheel Cart   a/c vacuum pump		China Good quality Stainless Steel Two Stage Vacuum Pump Lobe Rotary Piston Pump Gear Rotary Oil Pump with Moving Wheel Cart   a/c vacuum pump
editor by CX 2024-03-26

China Standard High-Pressure Vacuum Rated Glue Molasses Polymer Adhesive Hydraulic Oil Polyurethane Foam Metering Gear Pumps with Hot selling

Product Description

high-pressure vacuum rated glue molasses polymer adhesive hydraulic oil polyurethane foam metering gear pumps        

A.[Product Description]

   The design utilizes high standard external spur gears enclosed within a close tolerance housing assembly. This provides you the precise volume of fluid dispensed per shaft revolution. The housing is constructed from precision ground and lapped three-plate assembly. This assembly is aligned with dowels to allow close control of operating clearances. This construction method in combination with several proprietary internal features is what ensures precise, pulseless and reliable flow under varying process conditions. When HangZhou Instrument pumps are coupled with a pre-packaged, integrated, closed-loop speed control and a compact motor driver assembly (AC or DC), HangZhou Instrument is able to provide the most precise and flexible metering gear pump system on the market.  

 

B.[Parameters]

Model

Displacement

(CC/R)

Total Height Base Height Min Inlet Pressure Max Outpet Pressure Accuracy Temperature
GWMP-0.15 0.15 83 28.1 <0.2Mpa <30Mpa +/-3% 200ºC

GWMP-0.3

0.3 85 30.2 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-0.6 0.6 85 32 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-1.2 1.2 90 34 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-2.4 2.4 100 42 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-3.6 3.6 105 50 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-6 6 130 41 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-9 9 135 46 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-12 12 140 51 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-15 15 145 56 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-20 20 150 64 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-30 30 165 80 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-40 40 90 215 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-50 50 97 215 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-60 60 104.5 230 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-75 75 112 230 <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-80 80 Customized Customized <0.2Mpa <30Mpa +/-3% 200ºC
GWMP-125 125 Customized

Customized

<0.2Mpa <30Mpa +/-3% 200ºC

Note:Direction of rotation: clockwise from the axis of rotation 

 

Model 6CC 9CC 12CC 15CC 20CC 25CC 30CC
A 130 135 140 145 150 158 165
B 41 46 51 56 64 72 80

 

  Min Inlet Pressure   <0.2Mpa
  Working Speed   5~200 R/min
  Medium   Fluid
  Temperature   200ºC
  Max Outlet Pressure   <30Mpa
  Flow Capacity   6-30(+/-30)CC/R
  Sealing   Combined seal

 

Model 0.15CC 0.3CC 0.6CC 1.2CC 2.4CC 3.2CC 3.6CC
A 83 85 85 90 100 103 105
B 28.1 30.2 32 34 42 47.6 50

 

  Min Inlet Pressure   <0.2Mpa
  Working Speed   5~200 R/min
  Medium   Fluid
  Temperature   200ºC
  Max Outlet Pressure   <30Mpa
  Flow Capacity   0.15-3.6(+/-3%)cc/r
  Sealing   Combined 

C.[Installation]

D.[Company Info]

  • Our Company is Top 10 Manufacture on Alibaba;
  • We have about 30 years of experience in Manufacture;
  • Our products have been exported to more 100 coutries and area;
  • ISO,SGS,CE and more ceterficates for you reference;
  • Patent technology and more than 3 years working life

 

Mesh Form: Internal Engaged
Tooth Flank: Skew Tooth
Tooth Curve: Involute
Customization:
Available

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Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

vacuum pump

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.

vacuum pump

What Is the Role of Vacuum Pumps in Pharmaceutical Manufacturing?

Vacuum pumps play a crucial role in various aspects of pharmaceutical manufacturing. Here’s a detailed explanation:

Vacuum pumps are extensively used in pharmaceutical manufacturing processes to support a range of critical operations. Some of the key roles of vacuum pumps in pharmaceutical manufacturing include:

1. Drying and Evaporation: Vacuum pumps are employed in drying and evaporation processes within the pharmaceutical industry. They facilitate the removal of moisture or solvents from pharmaceutical products or intermediates. Vacuum drying chambers or evaporators utilize vacuum pumps to create low-pressure conditions, which lower the boiling points of liquids, allowing them to evaporate at lower temperatures. By applying vacuum, moisture or solvents can be efficiently removed from substances such as active pharmaceutical ingredients (APIs), granules, powders, or coatings, ensuring the desired product quality and stability.

2. Filtration and Filtrate Recovery: Vacuum pumps are used in filtration processes for the separation of solid-liquid mixtures. Vacuum filtration systems typically employ a filter medium, such as filter paper or membranes, to retain solids while allowing the liquid portion to pass through. By applying vacuum to the filtration apparatus, the liquid is drawn through the filter medium, leaving behind the solids. Vacuum pumps facilitate efficient filtration, speeding up the process and improving product quality. Additionally, vacuum pumps can aid in filtrate recovery by collecting and transferring the filtrate for further processing or reuse.

3. Distillation and Purification: Vacuum pumps are essential in distillation and purification processes within the pharmaceutical industry. Distillation involves the separation of liquid mixtures based on their different boiling points. By creating a vacuum environment, vacuum pumps lower the boiling points of the components, allowing them to vaporize and separate more easily. This enables efficient separation and purification of pharmaceutical compounds, including the removal of impurities or the isolation of specific components. Vacuum pumps are utilized in various distillation setups, such as rotary evaporators or thin film evaporators, to achieve precise control over the distillation conditions.

4. Freeze Drying (Lyophilization): Vacuum pumps are integral to the freeze drying process, also known as lyophilization. Lyophilization is a dehydration technique that involves the removal of water or solvents from pharmaceutical products while preserving their structure and integrity. Vacuum pumps create a low-pressure environment in freeze drying chambers, allowing the frozen product to undergo sublimation. During sublimation, the frozen water or solvent directly transitions from the solid phase to the vapor phase, bypassing the liquid phase. Vacuum pumps facilitate efficient and controlled sublimation, leading to the production of stable, shelf-stable pharmaceutical products with extended shelf life.

5. Tablet and Capsule Manufacturing: Vacuum pumps are utilized in tablet and capsule manufacturing processes. They are involved in the creation of vacuum within tablet presses or capsule filling machines. By applying vacuum, the air is removed from the die cavity or capsule cavity, allowing for the precise filling of powders or granules. Vacuum pumps contribute to the production of uniform and well-formed tablets or capsules by ensuring accurate dosing and minimizing air entrapment, which can affect the final product quality.

6. Sterilization and Decontamination: Vacuum pumps are employed in sterilization and decontamination processes within the pharmaceutical industry. Autoclaves and sterilizers utilize vacuum pumps to create a vacuum environment before introducing steam or chemical sterilants. By removing air or gases from the chamber, vacuum pumps assist in achieving effective sterilization or decontamination by enhancing the penetration and distribution of sterilants. Vacuum pumps also aid in the removal of sterilants and residues after the sterilization process is complete.

It’s important to note that different types of vacuum pumps, such as rotary vane pumps, dry screw pumps, or liquid ring pumps, may be utilized in pharmaceutical manufacturing depending on the specific requirements of the process and the compatibility with pharmaceutical products.

In summary, vacuum pumps play a vital role in various stages of pharmaceutical manufacturing, including drying and evaporation, filtration and filtrate recovery, distillation and purification, freeze drying (lyophilization), tablet and capsule manufacturing, as well as sterilization and decontamination. By enabling efficient and controlled processes, vacuum pumps contribute to the production of high-quality pharmaceutical products, ensuring the desired characteristics, stability, and safety.

vacuum pump

What Is the Purpose of a Vacuum Pump in an HVAC System?

In an HVAC (Heating, Ventilation, and Air Conditioning) system, a vacuum pump serves a crucial purpose. Here’s a detailed explanation:

The purpose of a vacuum pump in an HVAC system is to remove air and moisture from the refrigerant lines and the system itself. HVAC systems, particularly those that rely on refrigeration, operate under specific pressure and temperature conditions to facilitate the transfer of heat. To ensure optimal performance and efficiency, it is essential to evacuate any non-condensable gases, air, and moisture from the system.

Here are the key reasons why a vacuum pump is used in an HVAC system:

1. Removing Moisture: Moisture can be present within an HVAC system due to various factors, such as system installation, leaks, or improper maintenance. When moisture combines with the refrigerant, it can cause issues like ice formation, reduced system efficiency, and potential damage to system components. A vacuum pump helps remove moisture by creating a low-pressure environment, which causes the moisture to boil and turn into vapor, effectively evacuating it from the system.

2. Eliminating Air and Non-Condensable Gases: Air and non-condensable gases, such as nitrogen or oxygen, can enter an HVAC system during installation, repair, or through leaks. These gases can hinder the refrigeration process, affect heat transfer, and decrease system performance. By using a vacuum pump, technicians can evacuate the air and non-condensable gases, ensuring that the system operates with the designed refrigerant and pressure levels.

3. Preparing for Refrigerant Charging: Prior to charging the HVAC system with refrigerant, it is crucial to create a vacuum to remove any contaminants and ensure the system is clean and ready for optimal refrigerant circulation. By evacuating the system with a vacuum pump, technicians ensure that the refrigerant enters a clean and controlled environment, reducing the risk of system malfunctions and improving overall efficiency.

4. Leak Detection: Vacuum pumps are also used in HVAC systems for leak detection purposes. After evacuating the system, technicians can monitor the pressure to check if it holds steady. A significant drop in pressure indicates the presence of leaks, enabling technicians to identify and repair them before charging the system with refrigerant.

In summary, a vacuum pump plays a vital role in an HVAC system by removing moisture, eliminating air and non-condensable gases, preparing the system for refrigerant charging, and aiding in leak detection. These functions help ensure optimal system performance, energy efficiency, and longevity, while also reducing the risk of system malfunctions and damage.

China Standard High-Pressure Vacuum Rated Glue Molasses Polymer Adhesive Hydraulic Oil Polyurethane Foam Metering Gear Pumps   with Hot selling	China Standard High-Pressure Vacuum Rated Glue Molasses Polymer Adhesive Hydraulic Oil Polyurethane Foam Metering Gear Pumps   with Hot selling
editor by CX 2023-11-09

High Precision Hydraulic Gear Oil Pump and Motor

High Precision Hydraulic Gear Oil Pump and Motor

Large CZPT CZPT Gear Oil Pump and Motor

Product Description

Organization Data

 

ZheJiang CZPT CZPT CZPT Co., Ltd

With globe course producing facilities, experience and manufactures in the fluid electrical power industry for more than 30 many years

ZheJiang office set in Jiajie Constructing Xihu (West Lake) Dis. District, ZheJiang

Manufacturing facility established in CZPTsu Metropolis, CZPTsu Provience. 4 hours driving from ZheJiang .

 

Our Solutions

 

 1.Each item analyzed before shipping and delivery

 2.1 year guarantee

 3.GRH R&D department: total technician assist

 4.GRH good quality office: Your opinions assist us perform much better.

 5.Certification

 6.Exhibition

7.Partnerships

 

High Precision Hydraulic Gear Oil Pump and Motor

KCB960 Gear Oil Pump 60m3 H for Oil Transfer

KCB960 Gear Oil Pump 60m3 H for Oil Transfer

China Huanggong CZPTry Team Co&time period&commaLtd&period
Expert in pump sector for in excess of 35 several years&period of time

Brief introduction  
KCB960 Equipment Pump for Conveying CZPT Oil Max 60m3&solH
This pump is appropriate to have various oil&comma this kind of as heavy oil&comma diesel gas and lubricate oil&comma animal and vegetable oil and many others&interval It is also able to transfer the fluid of minimal flashing position&comma this sort of as gasoline and benzene etc&comma by currently being geared up with copper equipment&time period Please observe that the media temperature shouldn’t surpass 70° C for frequent pump and 300° C for anti-large temperature oil pump&interval The pump has protection valve by itself for defense when the pumps had been over-loaded&period of time Shaft seal has skeleton oil seal&comma mechanical seal and stuffing seal&time period Please show the shaft-seal variety you require when location the order&period of time

 

      Model     Capacity  &lparL&solmin&rpar Pressure  &lparbar&rpar Suction  Head  &lparm&rpar Power    &lparkw&rpar Diameter  &lparInch&rpar Speed  &lparr&solmin&rpar
KCB18&period3  eighteen&period3 fourteen&period5 5 one&period5 3&sol4″ 1400
KCB33&period3 33&period3 fourteen&period5 five two&period2 three&sol4″ 1420
KCB55      55 three&period3 five one&period5 1″ 1400
KCB83&period3  eighty three&period3 three&period3 five 2&period2 1  one&sol2″ 1420
KCB133&period3  133&period3 3&period3 5 4 two” 1450
KCB200    two hundred 3&period3 five 4 2″ 1450
KCB200    200 six five five&period5 two” 1450
KCB200  200 10 five seven&period5 two” 1450
KCB300    300 six 5 five&period5 three” 960
KCB483&period3 483&period3 three&period6 five 7&period5 3″ 1450
KCB633  633 10 five eleven 3″ 1450
KCB960    960 2&period8 5 eleven four” 960

Soon after sale service
One particular year warranty time&periodWithin guarantee interval&comma for non-synthetic top quality dilemma&comma we will restore and substitute spare areas for totally free&time period Other than for standard wear and tear of areas&period of time
We can provide all variety of pump
screw pump
centrifugal pump
equipment pump
vortex pump
diaphragm pump
hydraulic deep nicely cargo pump
electric deep well cargo pump
hand pump
CZPT bulkhead seal
CZPT tank washing machine

KCB960 Gear Oil Pump 60m3 H for Oil Transfer

Cbg3 Fishing Boat Hydraulic Oil Gear Pump

Cbg3 Fishing Boat Hydraulic Oil Gear Pump

 

CBG3 equipment pump has the characteristics of basic framework, reliable performance, nice shock resistance, easy to sustain.

Shaft conclude: rectangle spline, involute spline

Mounting: square flange

Inlet/outlet oil port: flange or screw

Design Rated  displaceme  nt(ml/r)   Pressure (mpa)   Speed (r/min)  volumetri c performance (≥%)   L   L1    Inlet Flange jointing port OUTlet Flange jointing port
 Rated Max.   Rated Max.   D a b T D a b T
CBG3100  100  16       20       2200       2500       92       202  103 35   thirty 60 M10 thirty 30 sixty M10
CBG3125 125   209.5  106.seven
CBG3140 140  214   109  38 36 70 M12 35
CBG160-11 160  220   112  38 30 60 M10 32
CBG3160 160  220   112  44  36 70 M12 32
CBG3200 200  234   119 35

 

Cbg3 Fishing Boat Hydraulic Oil Gear Pump

Cbhs-FC100L Hydraulic Oil Gear Single Pump for Dump Truck

Cbhs-FC100L Hydraulic Oil Gear Single Pump for Dump Truck

CBHS-FC100L is a new designed gear pump for autos, with strengthened  aluminium pump human body, specific treated floor.

☆Optional shaft sort: rectangle spline
☆Mounting: sq. flange
☆Inlet/outlet port: flange, screw

Model Rated displacement(ml/r) Stress (mpa) Pace (r/min) volumetric effectiveness (≥%) L L1 Pipe jointing port
Inlet Outlet
Rated Max. Rated Max. A D B D
CBHS-FC100L 100 23 25 2000 2500 ninety two 189 one hundred fifty five M36*one.five forty seven M36*1.five 47

 

Cbhs-FC100L Hydraulic Oil Gear Single Pump for Dump Truck

High Pressure Hydraulic Power Unit Hydraulic Single Gear Oil Pump Cbqab-D510-A1lz

High Pressure Hydraulic Power Unit Hydraulic Single Gear Oil Pump Cbqab-D510-A1lz

 

Functionality Attributes:
★ Pump housing is manufactured of large power aluminum alloy content.
★ The shaft extension kind: basic key (P), rectangular spline (H), involute spline, SAE spline.
★ The becoming a member of sort of inlet/outlet position is flange (F) or thread (L).
★ The vehicle-payment device of axial clearance makes certain the high quantity efficiency.
★ Larger working stress, broader speed variety.
★ Maintain larger volume performance when the pace is 600 rpm/min.

Product
 
Nominal Displacement
(mL/r)
 
Pressure
(bar)
Speed
(r/min)
Quantity Effectiveness
(≥%)
 
Rated Max. Min. Rated Max.
CBQAB-D510-A1LZ ten 100 a hundred and sixty 600 2500 3000 ninety two

High Pressure Hydraulic Power Unit Hydraulic Single Gear Oil Pump Cbqab-D510-A1lz

Ce Approved KCB Series Gear Fuel Oil Pump

Ce Approved KCB Series Gear Fuel Oil Pump

This pump is suitable to have various oil, these kinds of as hefty oil, diesel gas and lubricate oil, animal and vegetable oil and many others. It is also capable to transfer the fluid of minimal flashing stage, this sort of as gasoline and benzene and so on, by getting geared up with copper gear. Make sure you be aware that the media temperature shouldn’t surpass 70° C for widespread pump and 300° C for anti-high temperature oil pump. The pump has safety valve itself for security when the pumps had been in excess of-loaded. Shaft seal has skeleton oil seal, mechanical seal and stuffing seal. Remember to show the shaft-seal type you need when area the purchase.

 

      Model     Capacity  (L/min) Pressure  (bar) Suction  Head  (m) Power    (kw) Diameter  (Inch) Speed  (r/min)
KCB18.3  eighteen.three fourteen.five 5 one.5 3/4″ 1400
KCB33.3 33.three fourteen.five five two.two three/4″ 1420
KCB55      fifty five 3.3 5 1.five 1″ 1400
KCB83.3  83.three three.three five 2.2 1  1/2″ 1420
KCB133.3  133.3 3.three 5 four two” 1450
KCB200    200 three.three 5 four two” 1450
KCB200    two hundred six 5 five.five 2″ 1450
KCB200  two hundred ten five 7.five 2″ 1450
KCB300    three hundred 6 5 5.five three” 960
KCB483.3 483.3 3.6 5 seven.5 3″ 1450
KCB633  633 10 five eleven three” 1450
KCB960    960 2.eight 5 11 four” 960

 

Ce Approved KCB Series Gear Fuel Oil Pump

High Pressure External Gear Oil Pump

High Pressure External Gear Oil Pump

Summarize:

one.  KCB Oil Transfer Equipment Pump is made for pumping light-weight fuel oils these kinds of as diesel, kerosene, and biodiesel. It is also achievable to pump vegetable oil, motor oil, and even glycerol.

2. It is helical gear pump, and created-in by-move valve. For pumping thoroughly clean viscous liquids, not containing abrasive or solid particles.

3. They can run dry for only intermediate quantities of time, allowing for the use of a suction hose for accumulating fluids from a tank. They must not be run dry for an extended time period of time as oil is essential to lubricate the pump head. 
 

CZPTly utilised in:

         CZPTs: Pure or stuffed biHangZhou, pitch, diesel oil, crude oil, lube oil etc.

         CZPTs: Sodium silicate, acids, plastics, mixed substances, isocyanates and so on.

         Paint and ink.

         Resins and adhesives.

         Pulp and paper: acid, soap, lye, black liquor, kaolin, lime, latex, sludge etc.

         Meals: Chocolate, cacao butter, fillers, sugar, vegetable fats and oils, molasses, animal foodstuff etc.
 

Item details:

Doing work Principle: Double Exterior Helical Gears Optimistic Displacement Pump
Pump body substance: Cast Iron, SS304, SS316
Equipment materials: #forty five Metal, Copper, SS304, SS316
Temperature range:  Normal ≤ 70 C, Special  ≤ 300 C
CZPTr: Motor engine, diesel engine
Electricity specs: 220V, 240V, 380V, 400V, 415V, 440V, 460V,  50hz/60hz
Max movement fee: 9600 L/min
Max discharge stress: 1.45MPa
Type of connection: Quick couple, Thread, Flange
Shaft seal type:   Oil seal, CZPT seal, CZPT seal
Sliding bearing: Great aseismic efficiency
Helical Equipment: Great meshing overall performance, steady transmisson of gear reduce noise.

 

Functionality Knowledge:
 

Design Dimensions Rated Circulation Max. Stress

Rated Speed

Max. Power

Inch mm m3/h LPM USG/M BAR PSI RPM kW HP
KCB18.three 3/4” twenty 1.1 18.three five 14.5 210 1450 1.5 2
KCB33.3 2 33.three seven 2.2 3
KCB55 1” 25 three.3 fifty five 15 3 4
KCB83.3 one-1/2” forty five eighty three.3 22 five.five seven.5
KCB133 2” fifty eight 133 35 10 145 960 seven.five ten
KCB200 twelve two hundred 53 1450 11 fifteen
KCB300 3” eighty eighteen three hundred seventy nine 960 fifteen 20
KCB483.3 29 483.3 128 1450 22 30
KCB633 4” a hundred 38 633 167 960 thirty forty
KCB960 58 960 254 1450 45 60
KCB1200 6” 150 seventy two 1200 317 ten one hundred forty five 740 fifty five seventy five
KCB1600 96 1600 423 980 seventy five a hundred
KCB1800 8” two hundred 108 1800 476 740 ninety 120
KCB2500 150 2500 661 980 132 one hundred eighty
KCB2850 10” 250 171 2850 753 740 160 215
KCB3800 228 3800 1004 980 185 250
kCB4100 246 4100 1083 740 220 three hundred
KCB5400 14” 350 324 5400 1427 980 280 380
KCB5600 336 5600 1480 740 280 380
KCB7600 456 7600 2008 980 355 480
KCB7000 420 7000 1849 740 315 420
KCB9600 576 9600 2536 980 400 530

Company info:
ZHangZhoug CZPT CZPT Co., Ltd is a single of the foremost companies and exporters in the discipline of sector pumps with producing facilities in mainland China. We are specialized in oil pump, diaphragm pump, diesel engine pump, centrifugal pump, screw pump, chemical pump etc. 

High Pressure External Gear Oil Pump

Top Cycloid Gear Oil Pump Nippon Oil Pump Top-10A Top-11A Top-12A Top-13A Lubricating Oil Pump

Top Cycloid Gear Oil Pump Nippon Oil Pump Top-10A Top-11A Top-12A Top-13A Lubricating Oil Pump

Leading Cycloid gear oil pump Nippon Oil Pump Prime-10A Prime-11A Top-12A Best-13A Lubricating oil pump

 

CZPT&Produce:
 

Shipping and delivery Time:3~seven times after payment

Comprehensive Pictures:

Business Info:

 

FAQ:

Our Solutions:

Top Cycloid Gear Oil Pump Nippon Oil Pump Top-10A Top-11A Top-12A Top-13A Lubricating Oil Pump