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China supplier Shanghai High Temperature Vacuum PV2r1 Hydraulic Vane Pump with Good Price V vacuum pump brakes

Beschreibung des Produkts

Model Instruction

(F3-) 25V 19 A -1 A 22 R
Note Series Displacement Port connections Shaft type Outlet Positions Design number Rotation
No-marking:Petroleum
series oil
emulsification
fluid
water
glycol-fluid
phosphate
ester fluid
20V 2.3.4.5.6.7.8.9.10.11.12.14 A-SAE
A-SAE4-
bolt flange
1-Str key    151-Spline (Viewed from cover
end of pump)
Opposite inlet90° CCW from inlet
Inline with inlet
90°CW from inlet
22 (Viewed form shaft
end of pump)Left hand for
counter clockwise
Right hand for
clockwise
25V 10.12.14.15.17.19.21.25
35V 21.25.30.32.35.38.45 1-Str key  86-HD Str key  11-Spline
45V 42.45.50.57.60.66.75

USgpm Flow(USgpm) at 1200r/min and 0.69MPa

Technical Data

Series Flow code(USgpm) Geometric
displacement
mL/r(in2/r)
With antiwear hydraulic
oil or phosphate eater fluid
With water glycol fluid With water-oil emulsions     Min.speed  
Max.operating pressure MPa Max.speed r/min Max.operating pressure MPa Max.speed r/min Max.operating pressure MPa Max.speed r/min  
20V 2 7.5(0.46) 13.8 1800 13.8 1500 6.9 1200 600  
3 10(0.61)  
4 13(0.79) 20.7 15.9  
5 16.5(1.01)  
6 19(1.16)  
7 23(1.40)  
8 27(1.67)  
9 30(1.85)  
10 32(1.95)  
11 36(2.20)  
12 40(2.44) 15.9 13.8  
14 45(2.78) 13.8  
25V 10 32.5(1.98) 17.2 1800 15.9 1500 6.9 1500 600  
12 39(2.38)  
14 45(2.78)  
15 47(2.89)  
17 55(3.36)  
19 60(3.66)  
21 67(4.13)  
25 81(4.94)  
35V 21 67(4.13) 17.2 1800 15.9 1500 6.9 1500 600  
25 81(4.94)  
30 97(5.91)  
32 101(6.16)  
35 112(6.83)  
38 121(7.37)  
45 147(8.95) 13.8 13.8  
45V 42 138(8.41) 17.2 1800 15.9 1500 6.9 1500 600  
45 147(8.95)  
50 162(9.85)  
57 181(11.05)  
60 193(11.75  
66 )212(12.93)  
75 237(14.46) 13.8 13.8  

 

FAQ

1Q:How long can I get the feedbacks after we sent the inquiry?
A:We will reply you within 12 hours in working day.

2Q:Are you a direct manufacturer or trading company?
A:We have our own casting foundries and 1 CNC machining factory, we also have our own international sales department. We produce and sell all by ourselves.

3Q:Can you do customized products?
A:Yes, we are mainly doing customized products according to the customers’ drawings or samples.

4Q:What products can you offer?
A:Our products including CHINAMFG T6, T7 series, CHINAMFG V, VQ, V10, V20 series, CHINAMFG SQP and CHINAMFG PV2R series which are with the same performance with original products.

5Q:What’s the payment term?
A:When we quote for you, we will confirm with you the way of transaction, FOB, CIF, CNF, etc.
For mass production goods, you need to pay 30% deposit before producing and 70% balance against copy of documents. The most common way is by T/T, L/C is also acceptable.

6Q:Where are your products mainly exported to?
A:Our products are mainly exported to over 30 countries such as USA, Germany, Japan, Spain, Italy, UK, Korea, Australia, Canada and etc. Our clients include many OEM customers who specialize in train, automobile, forklift and construction machinery, we already have had cooperation with more than 10 of the world’s Top 500 companies as 1 of their major casting suppliers in China.
 

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Acting Form: Single-Acting
Type: Vane Pump
Certification: CE, ISO
Port1: Ningbo
Port2: Shanghai
Transport Package: Box
Samples:
US$ 100/Piece
1 Piece(Min.Order)

|

Customization:
Available

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Vakuumpumpe

What Is the Vacuum Level and How Is It Measured in Vacuum Pumps?

The vacuum level refers to the degree of pressure below atmospheric pressure in a vacuum system. It indicates the level of “emptiness” or the absence of gas molecules in the system. Here’s a detailed explanation of vacuum level measurement in vacuum pumps:

Vacuum level is typically measured using pressure units that represent the difference between the pressure in the vacuum system and atmospheric pressure. The most common unit of measurement for vacuum level is the Pascal (Pa), which is the SI unit. Other commonly used units include Torr, millibar (mbar), and inches of mercury (inHg).

Vacuum pumps are equipped with pressure sensors or gauges that measure the pressure within the vacuum system. These gauges are specifically designed to measure the low pressures encountered in vacuum applications. There are several types of pressure gauges used for measuring vacuum levels:

1. Pirani Gauge: Pirani gauges operate based on the thermal conductivity of gases. They consist of a heated element exposed to the vacuum environment. As gas molecules collide with the heated element, they transfer heat away, causing a change in temperature. By measuring the change in temperature, the pressure can be inferred, allowing the determination of the vacuum level.

2. Thermocouple Gauge: Thermocouple gauges utilize the thermal conductivity of gases similar to Pirani gauges. They consist of two dissimilar metal wires joined together, forming a thermocouple. As gas molecules collide with the thermocouple, they cause a temperature difference between the wires, generating a voltage. The voltage is proportional to the pressure and can be calibrated to provide a reading of the vacuum level.

3. Capacitance Manometer: Capacitance manometers measure pressure by detecting the change in capacitance between two electrodes caused by the deflection of a flexible diaphragm. As the pressure in the vacuum system changes, the diaphragm moves, altering the capacitance and providing a measurement of the vacuum level.

4. Ionization Gauge: Ionization gauges operate by ionizing gas molecules in the vacuum system and measuring the resulting electrical current. The ion current is proportional to the pressure, allowing the determination of the vacuum level. There are different types of ionization gauges, such as hot cathode, cold cathode, and Bayard-Alpert gauges.

5. Baratron Gauge: Baratron gauges utilize the principle of capacitance manometry but with a different design. They consist of a pressure-sensing diaphragm separated by a small gap from a reference electrode. The pressure difference between the vacuum system and the reference electrode causes the diaphragm to deflect, changing the capacitance and providing a measurement of the vacuum level.

It’s important to note that different types of vacuum pumps may have different pressure ranges and may require specific pressure gauges suitable for their operating conditions. Additionally, vacuum pumps are often equipped with multiple gauges to provide information about the pressure at different stages of the pumping process or in different parts of the system.

In summary, vacuum level refers to the pressure below atmospheric pressure in a vacuum system. It is measured using pressure gauges specifically designed for low-pressure environments. Common types of pressure gauges used in vacuum pumps include Pirani gauges, thermocouple gauges, capacitance manometers, ionization gauges, and Baratron gauges.

\Vakuumpumpe

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.

Vakuumpumpe

Can Vacuum Pumps Be Used in Food Processing?

Yes, vacuum pumps are widely used in food processing for various applications. Here’s a detailed explanation:

Vacuum pumps play a crucial role in the food processing industry by enabling the creation and maintenance of vacuum or low-pressure environments. They offer several benefits in terms of food preservation, packaging, and processing. Here are some common applications of vacuum pumps in food processing:

1. Vacuum Packaging: Vacuum pumps are extensively used in vacuum packaging processes. Vacuum packaging involves removing air from the packaging container to create a vacuum-sealed environment. This process helps extend the shelf life of food products by inhibiting the growth of spoilage-causing microorganisms and reducing oxidation. Vacuum pumps are used to evacuate the air from the packaging, ensuring a tight seal and maintaining the quality and freshness of the food.

2. Freeze Drying: Vacuum pumps are essential in freeze drying or lyophilization processes used in food processing. Freeze drying involves removing moisture from food products while they are frozen, preserving their texture, flavor, and nutritional content. Vacuum pumps create a low-pressure environment that allows frozen water to directly sublimate from solid to vapor, resulting in the removal of moisture from the food without causing damage or loss of quality.

3. Vacuum Cooling: Vacuum pumps are utilized in vacuum cooling processes for rapid and efficient cooling of food products. Vacuum cooling involves placing the food in a vacuum chamber and reducing the pressure. This lowers the boiling point of water, facilitating the rapid evaporation of moisture and heat from the food, thereby cooling it quickly. Vacuum cooling helps maintain the freshness, texture, and quality of delicate food items such as fruits, vegetables, and bakery products.

4. Vacuum Concentration: Vacuum pumps are employed in vacuum concentration processes in the food industry. Vacuum concentration involves removing excess moisture from liquid food products to increase their solids content. By creating a vacuum, the boiling point of the liquid is reduced, allowing for gentle evaporation of water while preserving the desired flavors, nutrients, and viscosity of the product. Vacuum concentration is commonly used in the production of juices, sauces, and concentrates.

5. Vacuum Mixing and Deaeration: Vacuum pumps are used in mixing and deaeration processes in food processing. In the production of certain food products such as chocolates, confectioneries, and sauces, vacuum mixing is employed to remove air bubbles, achieve homogeneity, and improve product texture. Vacuum pumps aid in the removal of entrapped air and gases, resulting in smooth and uniform food products.

6. Vacuum Filtration: Vacuum pumps are utilized in food processing for vacuum filtration applications. Vacuum filtration involves separating solids from liquids or gases using a filter medium. Vacuum pumps create suction that draws the liquid or gas through the filter, leaving behind the solid particles. Vacuum filtration is commonly used in processes such as clarifying liquids, removing impurities, and separating solids from liquids in the production of beverages, oils, and dairy products.

7. Marinating and Brining: Vacuum pumps are employed in marinating and brining processes in the food industry. By applying a vacuum to the marinating or brining container, the pressure is reduced, allowing the marinade or brine to penetrate the food more efficiently. Vacuum marinating and brining help enhance flavor absorption, reduce marinating time, and improve the overall taste and texture of the food.

8. Controlled Atmosphere Packaging: Vacuum pumps are used in controlled atmosphere packaging (CAP) systems in the food industry. CAP involves modifying the gas composition within food packaging to extend the shelf life and maintain the quality of perishable products. Vacuum pumps aid in the removal of oxygen or other unwanted gases from the package, allowing the introduction of a desired gas mixture that preserves the food’s freshness and inhibits microbial growth.

These are just a few examples of how vacuum pumps are used in food processing. The ability to create and control vacuum or low-pressure environments is a valuable asset in preserving food quality, enhancing shelf life, and facilitating various processing techniques in the food industry.

China supplier Shanghai High Temperature Vacuum PV2r1 Hydraulic Vane Pump with Good Price V   vacuum pump brakesChina supplier Shanghai High Temperature Vacuum PV2r1 Hydraulic Vane Pump with Good Price V   vacuum pump brakes
editor by CX 2024-03-20

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