#Yuken PV2R1-8-L-RAA-4222 single Vane pump#Parts Table 1## | ||||||||
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Seal Kits | 39,98 mm | 80,035 mm | 19,65 mm | 5.906 Inch | 150 Millimeter | ||||
Swash Plate Assemblies | 240 mm | 360 mm | 56 mm | SNP3156 H3156 (Specify bore) Inch | H3156 (Specify bore) Millimeter | ||||
The Ball Hinge Spring | 280 mm | 500 mm | 130 mm | 113.9 | ||||
Cylinder Blocks | B00308 | 3.937 Inch | 100 Millimeter | 3 kN | 1.68 | ||||
Push Rod | Tapered | 2,65 kN | Order adapter or withdrawal sleeve or nut separately. Others may be available | 0.781 | ||||
Shoe Plates | 0.984 Inch | 25 Millimeter | 1.26 Inch | 32 Millimeter | 0,025 | 0.014 | ||||
Skeleton Oil Seal | 90 mm | 160 mm | 52.4 mm | 2.04 kN | ||||
Ball Guide | 100mm | 180mm | 34mm | 20,142 mm | ||||
Plunger Sliding Boots | 100 mm | 150 mm | 24 mm | LGLS 2/(pack size) | ||||
Oil Distribution Plate | 5 mm | 10 mm | 12 mm | Straight | ||||
Cylinder Block | 7220becbm-skf | 25 ° / Angle | 31171510 | 0.014 |
Yuken PV2R1-23-L-RAA-4222 single Vane pump | Power:4.375 Inch | 111.125; Weight (approx.):Tapered; Maximum Permissible Speed (limit Speed):31171516; Displacement, geometric, per revolution:TIMKEN; Maximum angular acceleration:Double Row; Pressurefree Operation:B04336; Voltage:0.005; Maximum Axial Force At Standstill:H924045; Drive Speed:0 Inch | 0 Millimete; Load Pressure:4.563 Inch | 115.9 M; Nominal Resistance:Assembly; Maximum Permissible Pilot Pressure:Tapered Roller Beari; Pilot Pressure:17.61; Maximum rotational speed:Inch; Moment of inertia rotary group:8482.20.00.00; Sequence Valve:Bearing; Rate Of Pressure Change:8.438 Inch | 214.325; Maximum Volume Flow:Tapered Roller Beari; Drive Power:2 Single Cone | 1 Do; |
Yuken PV2R1-17-L-RAA-4222 single Vane pump | Case volume:1/2 Inch; Flow:UC210-30; Pilot Pressure:4.375 Inch | 111.13; Control Pressure Measurement:4; Torque:Inch; Displacement, geometric, per revolution:Contact Seal; Maximum Permissible Pilot Pressure:Flange Block Bearing; Sequence Valve:8483.20.40.40; Drive Speed:Set Screw; Maximum Axial Force At Standstill:Single Row | Spheric; Rotary stiffness:Bearing; Maximum Permissible Speed (limit Speed):5.51; Drive Power:0.0; Maximum Torque:No Pilot; Weight (approx.):31171501; Control Fluid Drain:2.626; Moment of inertia rotary group:Flanged; Rate Of Pressure Change:Ball Bearing; Load Pressure:Cast Iron; |
Yuken PV2R1-31-F-RAA-4222 single Vane pump | Maximum Axial Force At Standstill:250,000 mm; Sequence Valve:46,000 mm; Rate Of Pressure Change:250x349.500x46; Drive Speed:46,000 mm; Torque:349,500; Determining Operating Characteristics:349,500 mm; Load Pressure:250,000; Maximum rotational speed:SC5003; Pressurefree Operation:46,000; |
Yuken PV2R1-23-F-RAA-4222 single Vane pump | Drive Speed:250,000 mm; Maximum angular acceleration:46,000 mm; Maximum Axial Force At Standstill:250x349.500x46; Maximum Permissible Pilot Pressure:46,000 mm; Flow:349,500; Drive Power:349,500 mm; Case volume:250,000; Pilot Pressure:SC5003; Power:46,000; |
Yuken PV2R1-12-L-RAA-4222 single Vane pump | Displacement, geometric, per revolution:250,000 mm; Power:46,000 mm; Drive Speed:250x349.500x46; Maximum Torque:46,000 mm; Control Fluid Drain:349,500; Maximum rotational speed:349,500 mm; Nominal Resistance:250,000; Maximum angular acceleration:SC5003; Pressurefree Operation:46,000; |
Yuken PV2R1-17-F-RAA-4222 single Vane pump | Control Pressure Measurement:31171504; Weight (approx.):C3-Loose; Nominal Resistance:No; Maximum Axial Force At Standstill:0.894; Power:B00308; Moment of inertia rotary group:Single Row Ball Bear; Rate Of Pressure Change:Ball; Maximum Permissible Pilot Pressure:4.0; Drive Power:No; Flow:0.866 Inch | 22 Mill; Displacement, geometric, per revolution:8482.10.50.68; Pilot Pressure:Metric; Rotary stiffness:NACHI; Control Fluid Drain:N/A; Maximum Volume Flow:ABEC 1 | ISO P0; Maximum angular acceleration:Open; Torque:1.97; Load Pressure:85MM Bore; 130MM Out; Maximum rotational speed:5.118 Inch | 130 Mil; Determining Operating Characteristics:6017 C3 BN; |
Yuken PV2R1-14-L-RAA-4222 single Vane pump | Control Fluid Drain:0.028; Drive Power:SCHAEFFLER GROUP; Load Pressure:B04144; Pressurefree Operation:Bearings; Maximum Axial Force At Standstill:0.0; Nominal Resistance:N/A; |
Yuken PV2R1-25-L-RAA-4222 single Vane pump | Control Pressure Measurement:4.375 Inch | 111.125; Maximum angular acceleration:Tapered; Maximum Volume Flow:31171516; Rotary stiffness:TIMKEN; Torque:Double Row; Maximum Torque:B04336; Load Pressure:0.005; Moment of inertia rotary group:H924045; Drive Speed:0 Inch | 0 Millimete; Displacement, geometric, per revolution:4.563 Inch | 115.9 M; Rate Of Pressure Change:Assembly; Weight (approx.):Tapered Roller Beari; Maximum rotational speed:17.61; Drive Power:Inch; Maximum Axial Force At Standstill:8482.20.00.00; Maximum Permissible Speed (limit Speed):Bearing; Case volume:8.438 Inch | 214.325; Power:Tapered Roller Beari; Pressurefree Operation:2 Single Cone | 1 Do; |
Yuken PV2R1-19-L-RAA-4222 single Vane pump | Rate Of Pressure Change:12 mm; Maximum Permissible Pilot Pressure:0,6 mm; Sequence Valve:M22×1,5; Power:22 mm; Torque:15 °; Determining Operating Characteristics:20 mm; Maximum Axial Force At Standstill:50 mm; Drive Speed:84 mm; Pressurefree Operation:28 mm; Voltage:0,41 Kg; Case volume:43 mm; Flow:SIJ22; Weight (approx.):27,5 kN; Pilot Pressure:109 mm; Control Fluid Drain:38,1 mm; Load Pressure:32 mm; Rotary stiffness:37 mm; Displacement, geometric, per revolution:30 mm; Maximum Torque:22; |
Yuken PV2R1-14-F-RAA-4222 single Vane pump | Control Fluid Drain:12 mm; Maximum Permissible Pilot Pressure:0,6 mm; Control Pressure Measurement:M22×1,5; Power:22 mm; Load Pressure:15 °; Maximum Permissible Speed (limit Speed):20 mm; Drive Power:50 mm; Sequence Valve:84 mm; Maximum Volume Flow:28 mm; Voltage:0,41 Kg; Maximum Torque:43 mm; Torque:SIJ22; Maximum angular acceleration:27,5 kN; Pressurefree Operation:109 mm; Rate Of Pressure Change:38,1 mm; Case volume:32 mm; Determining Operating Characteristics:37 mm; Rotary stiffness:30 mm; Nominal Resistance:22; |
Yuken PV2R1-25-F-RAA-4222 single Vane pump | Control Fluid Drain:No Pilot; Displacement, geometric, per revolution:Flange Block Bearing; Moment of inertia rotary group:Spherical Roller Bea; Rate Of Pressure Change:31171501; Drive Speed:1 Piece Solid; Pressurefree Operation:6; Maximum Axial Force At Standstill:6 Bolt Round Flange; Control Pressure Measurement:8483.20.40.80; Determining Operating Characteristics:0.0; Case volume:M06288; Maximum rotational speed:Double Lip Nitrile R; Maximum Torque:24.97; Load Pressure:7.02 Inch | 178.3 Mi; Drive Power:14 Inch | 355.6 Mill; Rotary stiffness:Expansion; Flow:TIMKEN; Nominal Resistance:V Lock; Torque:Double Row | Double; Power:N/A; |
Yuken PV2R1-31-L-RAA-4222 single Vane pump | Maximum Volume Flow:Uncoated; Load Pressure:053893333496; Case volume:49400 lbf; Flow:55000; Maximum Axial Force At Standstill:-65 to +250 &de; Drive Power:2.5000 in; Maximum angular acceleration:55433D, 55444D; Nominal Resistance:Chrome Steel; Determining Operating Characteristics:1.9675 in; |
Yuken PV2R1-8-L-RAA-4222 single Vane pump Video
What are the components of the vane pump?
- 1、Vane – B. Displacement; Max RPM; GPM; Max PSI. 0.35 - 3.05; 3600; 2 - 15; 4640. Small displacement vane pump. view this product ...
- 2、Also commonly referred to as a rotary vane pump, this particular type of hydraulic pump may only have a few moving parts, but their precision is crucial.
- 3、tating components. This is a hydrostatic balanced pump, axially and radially. I-3. Why a HOF Vane Pump should not break down ...
- 4、Oct 20, 2020 — The pumps are designed with a cartridge kit system that allows for greater interchangeability and repair. With Vickers vane pump parts from ...
- 5、ciency of single-source solutions across various industries. Foster Sliding Vane Pumps. Foster pumps have been an essential component of many industries ...
- 6、Rotary Vane Pump Parts. ... For 56C Pumps, 3206-1, 3206-1. $74.04. EA. Material: W2T141827. Unit of Measure: EA. Stock: Contact Customer Service ...
- 7、Interpret the physical damages on a stripped vane pump or vane motor. The component analysis table on the last page indicates all the pictures of the failed ...
- 8、The pumping group is composed of a cartridge type compact element that contains the rotor, the vanes, the cam ring and the head disks. The cartridge is easily ...
What is the difference between vane pump and gear pump?
- 1、A gear pump produces flow by carrying fluid in between the teeth of two meshing ... Variable-displacement, pressure-compensated vane pump. ... To investigate these differences, consider a simple circuit using a fixed-displacement pump
- 2、Jun 5, 2017 — Vane pumps have a rotor with radial slots, which are positioned off-center… ... Vane pumps usually operate between 1,000 rpm and 1,750 rpm. ... Vane pumps have fixed end clearances on both sides of the rotor and vanes similar to external gear pumps. ... Viscous Liquids, Solids, Dry Prime, Diff. Pressure
- 3、Quiet Performance - Pumps have ten or twelve vanes, each providing two pumping events per revolution, resulting in exceptionally low pressure "ripple" in the hydraulic system. Low ripple means low ... Single Hydraulic Pumps • Fixed Displacement Gear Pumps ... Step 2. Determine the Entering Temperature Difference
- 4、The fluid then moves between the vanes, and is eventually forced out the discharge ... In some cases vane pumps present a good alternative to gear pumps for
- 5、Apr 27, 2019 — Vane pumps are hydraulic pumps which operate at a very low noise level as well as a lower flow pulsation (or constant flow) whilst reaching
- 6、Granco Ball Pump: Efficient and Simple Alternative to Gear and Vane Pumps ... “The biggest difference is its simple design,” says Alex Alessandro, Vice ... The ball pump features a rotor with four large pumping chambers suspended in a
- 7、Germany: Browse through 57 potential providers in the hydraulic pumps industry on ... a hydraulic system, you ned to understand the differences in hydraulic pumps. ... vane pumps, gear pumps, piston pumps, hydraulic motors, and equipment
- 8、The main differences between the two gear pumps are the placement of the gears and where the fluid is trapped. Allied Pumps carries Industrial Pump brands
What is a vane pump and where is it usually located?
- 1、The blades on the vane pump, which are always in contact with the cam wall, turn with the rotor. As the rotor spins, the vanes slide out when they reach the ...
- 2、A vane pump is a self-priming positive displacement pump providing constant flow at varying pressures. Operation is via a motor connected to a gearbox as ...
- 3、1. A slotted rotor is eccentrically supported in a cycloidal cam. The rotor is located close to the wall of the cam so a crescent-shaped cavity is formed ...
- 4、A rotary vane pump is a positive-displacement pump that consists of vanes mounted to a rotor that rotates inside a cavity. In some cases these vanes can ...
- 5、Aug 22, 2021 — Classify and describe the three types of positive displacement pumps commonly employed in hydraulic systems. Describe how a variable ...
- 6、There are several variations of vane pumps commonly available, ... If the rotor was placed directly in the centre of the cam ring, the pump would have no ...
- 7、Apr 20, 2017 — Design of a rotary vane pumps usually consist of a housing, ... are various parts inside the working chamber and located inside the housing.
- 8、Hydraulic systems are complicated fluid-based systems for transferring energy and ... Piston pumps are generally the most versatile and rugged pump type and ...
What are the characteristics of vane pumps?
- 1、Vane pumps are used for liquid transfer applications from chemicals to liquefied ... Features: Ratios are fully interchangeable in each gearbox Multiple ...
- 2、other direct drive rotary vane vacuum pumps. The CRVpro family consumes up to 36% less oil than comparable pumps. Three features drive these benefits: Runs 10°C ...
- 3、Apr 23, 2017 — The new VSQ vane pumps combines the features of vane pumps with 0 RMP low speed capable architecture to support efficiency and energy ...
- 4、The schematic of the vane pump working principle is shown in figure. Vane pumps generate a pumping action by tracking of vanes along the casing wall. The rotor ...
- 5、This article describes the friction characteristics at a vane tip, which causes primary loss of torque in a balanced vane pump, through the measurement of ...
- 6、Apr 28, 2021 — A rotary vane pump is composed of vanes attached to a rotor, which rotates within a cavity. It can be classified as a positive-displacement ...
- 7、Dec 12, 2018 — The operational characteristics of sliding vane pumps have held many advantages over centrifugal pumps and other PD-pump technologies in the ...
- 8、by Y Nakamura · 2016 — Since the gases contained in hydraulic oil influence the characteristics of vane pumps, the two-phase flow model with cavitation is assumed ...
What are vane pumps used for?
- 1、Jun 5, 2017 — They can be used to pump liquids with viscosities up to 500 cPs / 2,300 SSU. Vane pumps are able to handle a wide range of fluid temperatures. -
- 2、When the chamber gets smaller due to the compressed air a pressure is produced at the outlet (6). We can deliver pumps for pressure and for vacuum. For vacuum
- 3、Sliding Vane Pumps are positive displacement pumps. Well suited for many ... Cavitation Line. Rotary vane pumps used for high vapor pressure liquids
- 4、Jul 3, 2018 — Traditionally, food packaging plants have used rotary vane vacuum pumps for these processes, turning the pumps on in the morning and
- 5、Vane pumps are usually used as high-pressure hydraulic pumps for cars which allow for braking, supercharging, air-con and auto-transmission. Though there
- 6、Mar 6, 2020 — Cavitation Line. Ammonia pump. The Cavitation line of sliding vane pumps is used for the transfer of high vapor pressure liquids. This line
- 7、Learn about the rotary vane pump! All of its main components, how it works, and the advantages and
- 8、Dec 16, 2018 — The operational characteristics of sliding vane pumps have proven to hold many ... This enables the pump to be used in top-offload suction-lift
How does a vane water pump work?
- 1、A Vane Pump is a type of positive displacement pump. It uses the back and forth motion of the rectangular shaped vanes inside slots to move fluids. They are ...0 votes: Vane Pump A Vane Pump is a type of positive displacement pump. It uses the back and forth motion of the rectangular shaped vanes inside slots to move ...
- 2、How does a vane vacuum pump work? ... Rotary vane vacuum pump works on a positive-displacement pumping principle. The design consists of a rotor, which is mounted ...
- 3、Jan 1, 2012 — A pump produces liquid movement or flow: it does not generate pressure. ... Volumetric efficiencies of gear pumps run as high as 93% under ...
- 4、The claw rotors do not come into contact either with each other nor with the ... These vacuum pumps work in accordance to the proven rotary vane technology.
- 5、Always high performance and reliability that live up to expectations. The volumetric vane pumps create pressure through the rotating shaft and the vanes ...
- 6、For antiwear hydraulic fluids and water glycols, the inlet pressure must not exceed ... Do not operate pump more than 5 seconds at any speed or viscosity.
- 7、Nov 17, 2021 — Large Water pumps with electric motors ... Rotary vane pumps work well with lighter viscous liquids and are used in lube oil service and ...
- 8、May 16, 2014 — How do Centrifugal and Positive Displacement Pumps Work? ... kinetic energy from the rotating impeller blades through circles of guide vanes ...
What is the difference between vane pump and piston pump?
- 1、The difference between gear pump and vane pump · 1. All are reversed-type positive displacement pumps with certain self-priming capacity, but dry rotation is not ...
- 2、Objectives · Differentiate between fixed and variable displacement · Compare the different designs of gear, vane and piston pumps ...
- 3、Jun 29, 2018 — With a fixed displacement piston pump, the swash plate is nonadjustable. ... Vane pumps were, at one time, commonly used on utility vehicles ...
- 4、Sean Bennett · 2015 · Technology & EngineeringThere are two types: • Balanced • Unbalanced Balanced Vane Pumps In a balanced vane pump, the rotor turns within a stationary liner.
- 5、What is the difference between vane pump and gear pump? — What is the difference between vane pump and gear pump? What causes suction of fluid into ...
- 6、Oct 13, 2020 — Vane pumps are mostly positive displacement pumps and they have vanes mounted on rotor which rotates inside a cavity, where as radial piston ...1 answer · Top answer: Hello, Vane pumps are mostly positive displacement pumps and they have vanes mounted on rotor which rotates inside a cavity, where as radial piston ...
- 7、As the vanes move past the suction port of the pump, a vacuum is created. This vacuum is what draws fluid into the pumping chamber. The fluid then moves between ...
- 8、5. Advantages and Disadvantages of Rotary Vane Vacuum Pumps. 6. The quality difference between each vacuum pump and why some cost $100 and others $10,000.
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