bosch rexroth vane pumps manufacturers

bosch rexroth vane pumps manufacturers

bosch rexroth vane pumps

Topkitparts produces Bosch Rexroth Vane pumps are available in a wider range of sizes. They are used in applications requiring medium operating pressures and low noise emissions.

Vane pumps have a positive displacement design that makes them ideal for transferring liquids and slurries. The pump’s rotor shaft has two or more blades (called vanes) that slide back and forth inside a cylindrical casing to draw liquid into the pump through an inlet port, pressurize it and discharge it through an outlet port.

In the case of Rexroth vane pumps, the radial-cylindrical design provides high efficiency along with low noise and vibration levels. The minimal number of moving parts also contributes to their reliability and durability.

Topkitparts offer a wide range of options when it comes to design, materials and construction. This means that you can find a pump that meets all your requirements no matter what industry you work in or what application you need it for.

Rexroth Vane Pumps Series

Adjustable vane pumps PV7

Adjustable vane pumps PV7

  • Frame size 05, 18
  • Size 14 -150
  • Component series 1X
  • Nominal pressure 300 bar
  • Maximum operating pressure 160 bar
  • Maximum flow 270 l/min
Variable vane pumps PV7...A

Variable vane pumps PV7...A

  • Frame size 06, 20
  • Size 10 -25
  • Component series 1X, 2X
  • Maximum operating pressure 100 bar
  • Maximum displacement 25 cm³
  • Maximum flow 36 l/min
Fixed vane pumps PVV

Fixed vane pumps PVV

  • Frame size 1, 2, 4, 5
  • Size 18 -193
  • Component series 1X
  • Maximum operating pressure 210 bar
  • Maximum displacement 193.4 cm³
  • Maximum flow 285 l/min
Fixed vane pumps PVV

Fixed vane pumps PVQ

  • Frame size 1, 2, 4, 5
  • Size 18 -193
  • Component series 1X
  • Maximum operating pressure 210 bar
  • Maximum displacement 193.4 cm³
  • Maximum flow 285 l/min
Fixed vane pumps PVH

Fixed vane pumps PVH

  • Fixed displacement
  • Frame size 1, 2
  • Size 16- 79
  • Nominal pressure 290 bar
  • Maximum pressure 320 bar
  • Displacement 15.9 -79.3 cm³

Rexroth Vane Pumps pumps​ Engineer

Rexroth Vane Pumps Engineer online helps you solve the problem of Rexroth Vane Pumps ​adaptation and installation.

Rexroth Vane Pumps PDF

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Rexroth Vane Pumps feature

Hydraulic pumps of type PVV

Hydraulic pumps of type PVV are vane pumps with constant displacement. The rotor (2) running in a stator ring (3) is located on the tooth profile of the drive shaft (1). The slots of the rotor accommodate the vanes (4) which are pressed against the internal surfaces of the stator ring by the centrifugal force upon rotation of the rotor. The displacer chambers are laterally sealed by the control plates (5).

Due to the double-eccentric design of the stator ring, there are in each case two pressure chambers opposite of two suction chambers, which provides for hydraulic unloading of the shaft. So it only has to transmit the torque. The vanes are partially unloaded upon passage through the suction range. This unloading has a wear-reducing effect and ensures high efficiency.

By simply removing the cover (6), the pump insert (consisting of rotor, vane, stator ring and control plates) can be removed without the need of removing the housing (7) from the pump carrier. This allows for fast maintenance and repair of the pump.

Double pumps are formed by installing two pump installation kits on one joint shaft. The oil inlet is realized by one joint suction port in the central housing (10). The oil outlet is realized separately by both pump installation kits. 

For the front pump installation kit, the pressure port is located in the flange housing, for the back pump installation kit in the cover. The larger pump installation kit is always located on the flange housing side. Pump installation kits of the same frame size cannot be used as double pumps.

Rexroth Vane Pumps Video

Rexroth Vane Pumps Video gives you a straight forward, informative and comprehensive look at what you can expect from our vane pumps and systems.

This easy to understand video was built by the experts in the field and provides you with a chance to see the anatomy of these pumps and systems.

oem Rexroth Vane Pumps manufacturer
Play Video about oem Rexroth Vane Pumps manufacturer

Rexroth Vane Pumps Series Model

PV7-1X/16-30RE01MC5-08WHPV7-1X/06-10RA01MA3-05PVQ21-1X/040-040RJ15UUVBPVQ 21-1X/068-018RA15DDMBPVH1-1X/016RA15DMB
PV7-1X/16-20RE01MD0-16PV7-1X/06-14RA01MA0-04PVV1-1X/018RA15DMB SO43A-1500PVQ1-1X/027LJ15RMBPVH2-1X/025RA15UMB

Rexroth Vane Pumps Model Consult

We have a wide selection of Rexroth Vane Pumps Model so we can find one that suits your needs. We help you free inquiry!

Rexroth Vane Pumps FAQ

Free presale, in-sale, and after-sale consultation service for you!

The Rexroth Vane Pumps ships within 5 business days of your order. However, please allow up to 10 days for delivery, as we have no control over the carrier’s transit times. If you have not received your order after 10 days, please contact us!

  • The products should be in their original packaging.
  • The products should be unused.
  • The products must not have been damaged by you.
  • The products should be returned within 30 days of delivery date.
  • If the product is defective or damaged, then you can return it within 30 days of delivery date.

Warranty is the period of time for which a product is guaranteed to work. The period of time varies according to the manufacturer.

We provide free lifetime technical support, free online service, free online update for all products that we sell, and best price in China!

Rexroth Vane Pumps installation video is available. This video will help you to install the pump on your Rexroth Vane Pumps .

Yes, Rexroth Vane Pumps supports OEM.

We can supply the OEM service for you.

The price is based on your quantity and requirements.

Vane pumps work on the principle of centrifugal force. The fluid is pumped by a rotating impeller which creates a vacuum in the pump housing. The pressure difference between the suction and discharge sides results in a net flow of fluid towards the suction side.

A vane pump consists of an impeller, drive shaft or rotor shaft and volute casing as shown in Figure 1. The impeller has vanes that are mounted on an axle, which is supported by bearings at both ends. The vanes have sharp edges at their leading edges.

The rotating impeller draws the liquid into its chambers through ports near its outer edge and forces it out through ports near its inner edge. The liquid is forced out at high speed due to centrifugal force acting on it during rotation of impeller.

The answer is yes, provided that the pump is designed to do so.

For example, if you want to pump fluid in a clockwise direction, you can rotate the motor shaft 180 degrees. This will cause the vanes to move in a clockwise direction instead of counterclockwise (as they would normally).

It’s important to note that there are some restrictions on which brands and models can be rotated. For example, many Eaton and Dresser Rand pumps are not designed to be rotated.

In a vane pump, the oil is distributed through a supply nozzle. The supply nozzle is connected to the pump by way of an oil line. The supply nozzle has an opening that allows the oil to enter into the pump. It also has channels or holes in it that allow air bubbles to escape from the pump.

The oil enters into the pump and then flows through the rotor shaft of the vane pump. As it travels through this channel, it picks up air bubbles and other impurities. When these air bubbles reach the end of this channel, they are pushed out through another channel that leads to an exhaust port in the vane pump housing. This exhaust port allows for any remaining air bubbles to be removed from the system before they get trapped inside and cause damage to delicate components.

The next step in how oil is distributed in a vane pump occurs when it reaches the impeller vanes themselves. As these vanes spin around inside of their housing, they create centrifugal force (the same force responsible for making things fly out of your hand when you spin them fast enough). This centrifugal force pushes all of those tiny particles down into a central reservoir located at their center point (or “nose”).

A vane pump is a constant displacement pump. This means that it always moves the same amount of fluid for each revolution of the shaft. The volume of fluid moved depends on the number of vanes inside the pump, as well as their shape and size.

Variable displacement pumps are used in many different applications, including water wells and residential applications. They have a wide range of applications because they can be used for both submersible and centrifugal pumps.

A variable displacement pump works by using an impeller with many blades or vanes. The number of blades determines how much fluid it can move per revolution, while their shape determines how much force they can develop to push water through them.

The impeller is attached to a shaft that turns at a constant speed, while the pump housing keeps moving up and down to match its motion with that of the impeller. As this happens, more or less fluid enters into or leaves from the pump depending on how much pressure is required to meet demand at any given moment in time.

 Roller vane pumps are a type of hydraulic pump that uses the principle of centrifugal force to produce pressure. The roller vane pump is used for applications such as lifting, pumping and pressurizing liquids. The roller vane pump consists of a rotor with two or more vanes mounted on its circumference. Inside the rotor is an impeller that has blades mounted on it. As the rotor spins, the impellers push against the vanes and force them to move outward from their original position. The rotating vanes then cause a pressure differential between the inside and outside of the pump housing, which creates pressure in the liquid being pumped.

A binary vane pump is a positive displacement pump that uses two rotating vanes to move the fluid. The vanes are symmetrical about their centers, and each has a curved portion that comes into contact with the inside of the casing. In operation, the vanes rotate within a housing, creating an imbalance between them that causes one to move more than the other. This movement causes fluid to be drawn into one end of the pump and pushed out of the other end.

The size of the vanes determines how much fluid can be moved per revolution. The larger they are, the more fluid they can move but also the higher pressure they will require to operate at their maximum capacity.

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