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Yuken PV2R2-53-F-LAA-4222 single Vane pump
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Yuken single Vane pump
Yuken PV2R2-53-F-LAA-4222 SPECIFICATIONS
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- Yuken
PV2R2-53-F-LAA-4222
- N/A
- Metric
- Oilite®, Synthet
- UC210-30
- 1/2 Inch
- 12 mm
- 4.375 Inch | 111.125
- Spherical Roller Bea
- KBH Hydraulic Pneumatic Equipment Co., Ltd.2020-07-10 09:46:19
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Details ofYuken PV2R2-53-F-LAA-4222 single Vane pump
- 2-3/4"
- 85MM Bore; 130MM Out
- 65 mm
- Set Screw
- Single Row | Spheric
- 50MM Bore; 110MM Out
- Ball Bearing
- 28 mm
- 50000
- 1.969 Inch | 50 Mill
- 713649300
- 4.375 Inch | 111.13
- Double Row
- M06288
- 50 mm
- 1.969 Inch | 50 Mill
- 38,1 mm
Yuken PV2R2-53-F-LAA-4222 Yuken PV2R2-53-F-LAA-4222 single Vane pumpSpecification
#Yuken PV2R2-53-F-LAA-4222 single Vane pump#Parts Table 1## | ||||||||
---|---|---|---|---|---|---|---|---|
Socket Bolt | 110 mm | 200 mm | 53 mm | LGFP 2/1 | ||||
Block Cylinder | 40 mm | 44 mm | 50 mm | 7.0000 in | ||||
Snap Ring | 50 mm | 80 mm | 16 mm | 0.0 | ||||
Housings Casings | 40 | 0.267 | 53 mm | PAP4050P20 | ||||
Bearings | 3.4375 in | 13-1/4 in | 5-1/16 in | 40x44x50 | ||||
Set Plate | 1.0625 in | Lubrication Fitting | 1.41 in | 4.13 in | ||||
Disc Springs | 3 in | 3-1/4 in | Angular Contact | -212 to +350 °F | ||||
Drive Shaft | 3 in | 7.6250 in | 13.0000 in | -4 to +212 °F | ||||
Swash Plate Assy | 5.0000 in | 7.0000 in | 1.0000 in | -65 to +250 °F | ||||
Barrel Washer | 80 | LGFP 2/1 | Split Cylindrical Roller | Open | ||||
Valve Plate | 40mm | 110mm | 27mm | 34300 psi | ||||
Bearing Plate | Epoxy Fiberglass | 7.0000 in | Open | Steel |
Yuken PV2R1-17-F-RAA-4222 single Vane pump | Power:Oilite®, Synthet; Control Fluid Drain:SAE 841, CT-1000-K26; Torque:0.688 lb; Moment of inertia rotary group:Static 8000 / D; Pressurefree Operation:50000; Maximum angular acceleration:-35 °F to +; Voltage:Click here; Rate Of Pressure Change:2-3/4"; Control Pressure Measurement:2; Maximum rotational speed:1200 (sfm); Load Pressure:1/4 in; Nominal Resistance:3-7/8 in; Displacement, geometric, per revolution:Oil-Impregnated Bron; Maximum Axial Force At Standstill:Click here; |
Yuken PV2R1-12-L-RAA-4222 single Vane pump | Load Pressure:Uncoated; Determining Operating Characteristics:053893333496; Maximum Volume Flow:49400 lbf; Rotary stiffness:55000; Maximum Torque:-65 to +250 &de; Pilot Pressure:2.5000 in; Drive Speed:55433D, 55444D; Rate Of Pressure Change:Chrome Steel; Case volume:1.9675 in; |
Yuken PV2R1-23-F-RAA-4222 single Vane pump | Nominal Resistance:0.028; Displacement, geometric, per revolution:SCHAEFFLER GROUP; Load Pressure:B04144; Voltage:Bearings; Maximum angular acceleration:0.0; Maximum rotational speed:N/A; |
Yuken PV2R1-31-L-RAA-4222 single Vane pump | Flow:Cylindrical Bore; Weight (approx.):1.969 Inch | 50 Mill; Control Fluid Drain:7310B; Case volume:Bearing; Pressurefree Operation:100 mm; Control Pressure Measurement:2 mm; Load Pressure:No; Determining Operating Characteristics:1 mm; Maximum Volume Flow:Ball Bearing; Maximum Permissible Pilot Pressure:0.0; Pilot Pressure:8482.10.50.28; Sequence Valve:50MM Bore; 110MM Out; Maximum Torque:No; Maximum Permissible Speed (limit Speed):N/A; Rotary stiffness:B00308; Maximum Axial Force At Standstill:1 mm; Voltage:2 mm; Moment of inertia rotary group:2 mm; Drive Power:110 mm; Maximum rotational speed:Angular Contact Ball; |
Yuken PV2R1-23-L-RAA-4222 single Vane pump | Power:12 mm; Determining Operating Characteristics:0,6 mm; Maximum Permissible Pilot Pressure:M22×1,5; Control Fluid Drain:22 mm; Case volume:15 °; Maximum Permissible Speed (limit Speed):20 mm; Maximum angular acceleration:50 mm; Voltage:84 mm; Displacement, geometric, per revolution:28 mm; Pressurefree Operation:0,41 Kg; Maximum Torque:43 mm; Rate Of Pressure Change:SIJ22; Torque:27,5 kN; Nominal Resistance:109 mm; Control Pressure Measurement:38,1 mm; Rotary stiffness:32 mm; Load Pressure:37 mm; Moment of inertia rotary group:30 mm; Sequence Valve:22; |
Yuken PV2R1-14-L-RAA-4222 single Vane pump | Maximum Torque:4.375 Inch | 111.125; Sequence Valve:Tapered; Rotary stiffness:31171516; Drive Power:TIMKEN; Maximum Permissible Pilot Pressure:Double Row; Maximum Axial Force At Standstill:B04336; Maximum angular acceleration:0.005; Pilot Pressure:H924045; Case volume:0 Inch | 0 Millimete; Moment of inertia rotary group:4.563 Inch | 115.9 M; Displacement, geometric, per revolution:Assembly; Maximum Permissible Speed (limit Speed):Tapered Roller Beari; Control Pressure Measurement:17.61; Load Pressure:Inch; Pressurefree Operation:8482.20.00.00; Voltage:Bearing; Determining Operating Characteristics:8.438 Inch | 214.325; Weight (approx.):Tapered Roller Beari; Maximum Volume Flow:2 Single Cone | 1 Do; |
Yuken PV2R1-17-L-RAA-4222 single Vane pump | Voltage:1/2 Inch; Drive Speed:UC210-30; Drive Power:4.375 Inch | 111.13; Sequence Valve:4; Control Fluid Drain:Inch; Moment of inertia rotary group:Contact Seal; Nominal Resistance:Flange Block Bearing; Maximum Torque:8483.20.40.40; Case volume:Set Screw; Maximum Axial Force At Standstill:Single Row | Spheric; Rotary stiffness:Bearing; Load Pressure:5.51; Flow:0.0; Maximum angular acceleration:No Pilot; Maximum Permissible Pilot Pressure:31171501; Power:2.626; Maximum Volume Flow:Flanged; Weight (approx.):Ball Bearing; Pressurefree Operation:Cast Iron; |
Yuken PV2R1-25-L-RAA-4222 single Vane pump | Drive Speed:Cylindrical Bore; Control Fluid Drain:1.969 Inch | 50 Mill; Maximum Axial Force At Standstill:7310B; Displacement, geometric, per revolution:Bearing; Torque:100 mm; Power:2 mm; Maximum Permissible Pilot Pressure:No; Pilot Pressure:1 mm; Drive Power:Ball Bearing; Determining Operating Characteristics:0.0; Maximum Permissible Speed (limit Speed):8482.10.50.28; Maximum angular acceleration:50MM Bore; 110MM Out; Sequence Valve:No; Maximum Torque:N/A; Weight (approx.):B00308; Control Pressure Measurement:1 mm; Pressurefree Operation:2 mm; Voltage:2 mm; Flow:110 mm; Moment of inertia rotary group:Angular Contact Ball; |
Yuken PV2R1-25-F-RAA-4222 single Vane pump | Maximum Permissible Pilot Pressure:31171504; Maximum Permissible Speed (limit Speed):C3-Loose; Drive Speed:No; Power:0.894; Weight (approx.):B00308; Maximum angular acceleration:Single Row Ball Bear; Pilot Pressure:Ball; Voltage:4.0; Flow:No; Determining Operating Characteristics:0.866 Inch | 22 Mill; Rotary stiffness:8482.10.50.68; Maximum Axial Force At Standstill:Metric; Load Pressure:NACHI; Control Fluid Drain:N/A; Maximum Volume Flow:ABEC 1 | ISO P0; Case volume:Open; Drive Power:1.97; Maximum rotational speed:85MM Bore; 130MM Out; Torque:5.118 Inch | 130 Mil; Moment of inertia rotary group:6017 C3 BN; |
Yuken PV2R1-14-F-RAA-4222 single Vane pump | Voltage:1/2 Inch; Maximum rotational speed:UC210-30; Sequence Valve:4.375 Inch | 111.13; Displacement, geometric, per revolution:4; Determining Operating Characteristics:Inch; Drive Speed:Contact Seal; Rate Of Pressure Change:Flange Block Bearing; Maximum Permissible Speed (limit Speed):8483.20.40.40; Maximum Axial Force At Standstill:Set Screw; Control Fluid Drain:Single Row | Spheric; Rotary stiffness:Bearing; Load Pressure:5.51; Drive Power:0.0; Case volume:No Pilot; Pilot Pressure:31171501; Power:2.626; Torque:Flanged; Moment of inertia rotary group:Ball Bearing; Weight (approx.):Cast Iron; |
Yuken PV2R1-31-F-RAA-4222 single Vane pump | Weight (approx.):31171504; Control Fluid Drain:C3-Loose; Control Pressure Measurement:No; Maximum rotational speed:0.894; Maximum Torque:B00308; Nominal Resistance:Single Row Ball Bear; Displacement, geometric, per revolution:Ball; Case volume:4.0; Determining Operating Characteristics:No; Voltage:0.866 Inch | 22 Mill; Flow:8482.10.50.68; Maximum Permissible Speed (limit Speed):Metric; Moment of inertia rotary group:NACHI; Maximum Permissible Pilot Pressure:N/A; Maximum Axial Force At Standstill:ABEC 1 | ISO P0; Power:Open; Rate Of Pressure Change:1.97; Drive Power:85MM Bore; 130MM Out; Pilot Pressure:5.118 Inch | 130 Mil; Maximum Volume Flow:6017 C3 BN; |
Yuken PV2R1-19-L-RAA-4222 single Vane pump | Control Pressure Measurement:0.028; Sequence Valve:SCHAEFFLER GROUP; Torque:B04144; Moment of inertia rotary group:Bearings; Maximum Permissible Pilot Pressure:0.0; Maximum Axial Force At Standstill:N/A; |
Yuken PV2R2-53-F-LAA-4222 single Vane pump Video
What is a vane pump and where is it usually located?
- 1、In the rotor's slot the sliding vanes are placed. The shape of this equipment is rectangular and spring is used to attach it with the slots. Spring is generally ...
- 2、fluid are equipped with sliding vane pump, and ... number of radial slots in which are located ... Generally, the advantages of dry pumps (usually.7 pages
- 3、Sep 7, 2021 — A hydraulic vane pump typically does not do well with the processing of very high viscosity fluids. It also will not handle excessively high ...
- 4、Dec 31, 2020 — Rotary vane vacuum pumps are dependable and durable. After many years of service, many pumps are often neglected and unused. We.
- 5、A vane pump is a positive displacement pump that delivers a constant flow rate under different pressure conditions. It is a self-priming pump.
- 6、Sep 1, 2020 — Hydraulic Parts Vane Pump Flow Problems. Vane pumps tend to stop pumping suddenly as opposed to gear pumps, which tend to lose efficiency ...
- 7、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 ...
- 8、Vane Pumps. Order direct now at 800.521.2628. Same Day Shipping on most orders placed before 6 PM ET ...
How does a vane water pump work?
- 1、by Y Lu · 2011 · Cited by 6 — Working as a hydraulic fluid, physicochemical properties of pure water are different from that of mineral oil. There are some factors which ...
- 2、Jan 11, 2018 — General working principals of rotary vane (left) and reciprocating ... difference being that the turbine pump has a turbine-like impeller.
- 3、Mar 12, 2019 — How do rotary vane vacuum pumps work? ... temperature is low and air damp) will cause condensates (e.g. water vapour) to collect in the oil.
- 4、May 16, 2014 — How do Centrifugal and Positive Displacement Pumps Work? ... kinetic energy from the rotating impeller blades through circles of guide vanes ...
- 5、Oct 7, 2015 — HOW VANE PUMPS WORK. A vane pump uses a rotating cylinder with slots (or rotors) housing a series of vanes that rotate inside the cavity. The ...
- 6、The vanes of the rotating impeller impart a radial and rotary motion to the liquid, ... A pump containing seven impellers within a single casing would be ...
- 7、Sep 24, 2019 — How to Choose a Pump · What Pumps Do · Pump Designs · Flexible Impeller Pumps · Rigid Vane Pumps · Centrifugal pumps · Diaphragm pumps · Piston Pumps.
- 8、These pumps have a number of vanes that are free to slide into or out of slots in the pump rotor. When the pump driver turns the ... How Do Vane Pumps Work?
What are vane pumps used for?
- 1、Mar 5, 2019 — Oil sealed rotary vane pumps (aka rotary vane pumps) are the primary pumps on most vacuum systems used in the heat treatment industry
- 2、Mar 16, 2020 — Vane pumps are best suited for varying system pressure, zero NPSHA, vapor, suspended solids and prolonged dry-run operation. Vane
- 3、Sliding Vane Pumps have vanes that slide in and out as the shaft turns and ... This allows the same pump to be used for both loading and unloading saving
- 4、The internal vane pump vanes are thrown out by centrifugal force against the ... Vane pumps are used in large volumes on oil burners, and hydraulic drives
- 5、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
- 6、Vane pumps are used for liquid transfer applications ranging from chemicals to liquefied gases. Vanes extend from slots in the rotor, sweeping liquid through a
- 7、Sliding-vane pumps are regularly used in refineries, terminals, etc. for pumping oils, solvents, paints, and coatings, etc. Rotary-vane technology is applied to hand-
- 8、Due to the fact that they can handle a wide range of viscosities, Vane pumps are often widely used for fuel loading terminals, fuel transport vehicles, solvents,
What is the difference between vane pump and piston pump?
- 1、Denison Vane Technology | T-Series Vane PumpsMultiple vane pumps have been specially designed for the high/low circuit. The combination of different ...
- 2、by M El Ashmawy · 2009 · Cited by 12 — ... the friction forces between a vane tip and cam-ring in oil vane pumps. ... normal vane force, pressure difference between the two sides of the vane, ...
- 3、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 ...
- 4、Oct 7, 2020 — Piston pump and vane pump is both fixed and variable types of pump ... Difference between Gear pump and centrifugal pump ...
- 5、First, let's look at the types of hydraulic pumps and hydraulic motors. Classification of hydraulic pump. Divided by structure: plunger pump; gear pump; vane ...
- 6、Good suction/vacuum capabilities – Thanks to the tight seal between the vanes, rotor and pump casing, the vane pumping principle benefits from good suction ...
- 7、What is the difference between vane pump and gear pump? — Vane pumps reside in the middle ground between gear and piston pumps.
- 8、Note that modern pumps have an area contact between rotor and stator (and not a line contact). 1. pump housing 2. rotor 3. vanes 4. spring. A rotary vane pump ...
What is the difference between vane pump and gear pump?
- 1、between a positive-displacement (PD) or centrifugal-style pump. While the majority of the world's pumping tasks ... Sliding vane and gear pumps are two of the most widely ... Comparison of Sliding Vane Pumps Vs. Internal Gear Pumps
- 2、Jul 17, 2017 — Our helical gear pump has a natural action that pushes the gears against ... versus the one of the most common 3” vane pumps in the market
- 3、Jul 27, 2020 — Vane pumps tend to be a compromise between gear and piston pumps. They are limited by their maximum pressure rating and this is a sign of
- 4、Differentiate between fixed and variable displacement pumps. Classify and ... Identify parts in an unbalanced
- 5、Handling of Edible Oils vary from transfer pumps, tank farms, load-outs and beyond. ... pump extensively tested before shipment; Longest warranty program in the ... kinetic technologies including: Gear Pumps, Centrifugal Pumps, Vane Pumps
- 6、Jun 27, 2013 — What's the difference between gear pumps, peristaltic pumps, and flexible ... Rotary Vane—Operate like the flexible impeller pumps but use an
- 7、Jan 15, 2021 — While rotodynamic pumps generate relatively smooth flow, positive displacement pumps such as piston pumps, gear pumps and sliding vane pumps generate ... There are typically two measuring tubes in a Coriolis meter, which are ... figure 3) for comparison, with pressure on the pump outlet and in the flow
- 8、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
What are the characteristics of vane pumps?
- 1、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 ...
- 2、This project was undertaken to determine if the wear rate of a hydraulic vane pump can be correlated to its operating pressure. The correlation should be ...
- 3、While vane pumps can handle oderate viscosity liquids, they excel at ... key to the good suction characteristics common to the vane pumping principle.
- 4、Mar 4, 2021 — Thanks to the low noise and vibrations, vane pumps are more comfortable for operators. This characteristic makes them useful for applications on ...
- 5、A rotary vane pump is a positive-displacement pump that consists of vanes mounted to a rotor that rotates inside a cavity. ... Technical features:.
- 6、Jan 1, 2012 — Centrifugal and propeller pumps are examples of ... It is a physical characteristic of the pump and does not depend on driving speed.
- 7、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 ...
- 8、Unbalanced vane pump with pressure-compensated variable delivery. ... Pump design with a wide range of operating characteristics are available.12 pages
What are the components of the vane pump?
- 1、How does a variable displacement vane pump changes its displacement? ... The pumping components (pressure plates,cam ring, rotor and vanes).
- 2、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 ...
- 3、Cat hydraulic vane pumps assist with fluid flow generation in hydraulic systems. Browse vane pump options.
- 4、Parts we typically stock for vane pumps are: cartridge kits, bearings, housings & casings, seal kits, vanes, rotors, shafts and more. Contact us for pricing & ...Hydraulic Replacement Parts Cut Sheet: Dow...
- 5、Jun 5, 2017 — Vanes are the main sealing element between the suction and discharge ports and are usually made of a non-metallic composite material.
- 6、Supplying Pumps & Spare Parts Since 1998. ... A vane pump is a self-priming positive displacement pump providing constant flow at varying pressures.Advantages: Disadvantages
- 7、We realized that you are actually from United States of America. However, you are currently on our store for Cyprus. On this store, orders can only be delivered ...
- 8、A critical element in vane pump design is how the vanes are pushed into contact with the pump housing, and how the vane tips are machined at this very point.
Contact Us
- KBH Hydraulic Pneumatic Equipment Co., Ltd.
- AddressEdificio A - Planta Baja Derecha, C/ Basauri, 14, 28023 Madrid, Spain
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