Rexroth A10VO63 A10VSO71 Axial Piston Variable Pump
| Model Number | A10VSO71, A10VO71, A10V71, A10VO Series Axial Piston Pump A10V71 A10VO71 A10VSO71, A10VO100DFR1/31R-VSC62K07-SO143, A10VO45DRG-52L-PSC12N00, A10VSO71DFR1/31R-VPA42N00 |
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Product Description
The A10VO and A10VSO Series Axial Piston Variable Displacement Pumps (featuring elite heavy-duty technical specifications A10VO63LA8DS/53R-VUC12N00 and industrial-grade A10VSO71DFR1/31R-VPA42N00) by Chengyuan Hydraulic represent premium fluid power solutions built for 100% direct drop-in interchangeability with global benchmark open-circuit systems. Manufactured in absolute structural tolerance with Bosch Rexroth engineering blueprints, these displacement-adjustable piston pumps seamlessly match original standard SAE mounting flanges, through-drive profiles, spline configurations, and high-precision pilot controllers. This allows international B2B networks to direct field replacements on site without structural refitting or pipe alterations.
Serving as the fluid power heart for proportional hydrostatic systems, the A10VO/A10VSO series is globally acclaimed for its extraordinary power density, high volumetric efficiency, and superior self-priming behavior. At Chengyuan, zero compromises are made on component reliability; every pump unit clears our 100% rigorous automated simulation test bench schedule. By logging dynamic step response latencies, case drain internal leakage parameters, control valve hysteresis loops, and bearing thermal spikes under peak pressure levels, we guarantee zero-defect performance and long-term structural integrity out of the box.
Technical Specifications
Product Series Classification: A10VO (Mobile applications) / A10VSO (Industrial stationary arrays) Axial Piston Variable Pump
Circuit Configuration: Open Circuit Architecture
Direction of Rotation: R (Clockwise rotation, viewed from the drive shaft face)
Sealing Compounds: V (FKM Viton Seals, engineered for aggressive thermal and chemical exposures)
Model-Specific Engineering Data (Catalog Verified):
Model Code: A10VO63LA8DS/53R-VUC12N00 (Series 53, Mobile Build)
Geometrical Displacement: 63.0 cc/rev (cm3/rev)
Nominal Continuous Operating Pressure: 280 bar (28 MPa)
Maximum Peak Shock Pressure: 350 bar (35 MPa)
Maximum Self-Priming Speed (at 1 bar absolute inlet): 2500 rpm
Control Technology Code LA8DS: Electro-proportional override torque/power control (with power limitation curves)
Drive Shaft Configuration: U (Standard SAE splined shaft)
Through-Drive Adapters: C12 (Accommodates tandem auxiliary pump mounting)
Net Physical Weight: Approx 36.0 kg
Model Code: A10VSO71DFR1/31R-VPA42N00 (Series 31, Industrial Stationary Build)
Geometrical Displacement: 71.0 cc/rev (cm3/rev)
Nominal Continuous Operating Pressure: 280 bar (28 MPa)
Maximum Peak Shock Pressure: 350 bar (35 MPa)
Maximum Self-Priming Speed (at 1 bar absolute inlet): 2100 rpm
Control Technology Code DFR1: Pressure / Flow Load Sensing configuration (with blocked orifice jet throttling)
Drive Shaft Configuration: P (Standard SAE parallel straight keyed shaft)
Service Port Interface: A42 (SAE high-pressure ports with metric securing threads)
Net Physical Weight: Approx 45.0 kg
Recommended Working Media: Mineral-based premium hydraulic oils (Viscosity spectrum: 10 to 1000 mm2/s)
Operating Temperature Bandwidth: -25°C to +90°C
Key Technical Advantages
High-Rigidity Swashplate Support & Bi-Metal Piston Assemblies: The nine core-piston tribological pairs are machined from high-alloy carbon steel mated with micro-finished tribological materials. The piston shoes are joined using advanced heavy-upsetting hot extrusion forging to withstand continuous severe 350 bar peak stress spikes. This guarantees robust hydrostatic oil-film thickness, maintaining volumetric efficiency above 95%.
Hydrostatically Balanced Spherical Valve Plate Design: Abandoning flat plate geometries that are susceptible to quick face-scoring, our units introduce a precision spherical valve plate mechanism. Utilizing an internal pressure-compensating balance matrix, it maintains a micron-range lubrication gap against the turning cylinder block. This dampens discharge decompression fluid pulses and fluid-borne noise (≤72 dB(A) at full rated load).
Ultra-Responsive Low-Hysteresis DFR1/LA8DS Valve Spools: The pilot-operated control valve spools feature finely machined micro-metering notches. The DFR1 load-sensing module registers downstream actuator loading variations with extreme fidelity, driving transient swashplate stroke corrections within 40 ms. This perfectly matches flow output to demand, maximizing energy conservation and stopping pressure spikes.
Heavy-Duty Oversized Tapered Roller Shaft Bearings: The drive shaft is secured by heavy-duty tapered roller layouts. Their calculated wide spacing perfectly counters external bending moments and overhung radial loads caused by heavy tandem through-drive auxiliary attachments or belt pulleys, preventing asymmetric cylinder block tilting and multiplying fatigue-free bearing life.
Application Areas
The A10VO/A10VSO series is widely integrated across rugged mobile platforms and precision plant automation requiring precise pressure-flow load matching:
Mobile Off-Highway & Infrastructure Equipment: Main pumps for high-altitude aerial lift booms, auxiliary pilot hydraulic supply for multi-ton heavy excavators, concrete pump truck remixing sub-circuits, and hydrostatic pavers (utilizing A10VO63LA8DS).
Industrial Automation & Factory Plant Stationary Stations: Primary energy-saving oil sources for plastic injection molding machinery, constant-pressure supplies for scrap scrap metal balers and industrial shears, and servo-proportional pump stations for ceramic presses (utilizing A10VSO71DFR1).
Marine & Heavy Metallurgy Complexes: Charge feed systems for deck anchor winches, converter control valve blocks inside steel plants, and heavy marine ship-repair terminal power packs.
Expert Maintenance Tips
Mandatory Pre-Commissioning Case Priming: Prior to initial startup or reactivation after maintenance flushes, the pump casing must be fully pre-filled with clean, filtered hydraulic oil via its highest accessible case drain port. Manually rotate the input shaft several turns to distribute the boundary anti-wear oil film across the swashplate face. Never run the pump dry or with an empty housing; doing so will cause terminal galling and component destruction within seconds.
Strictly Regulate Maximum Case Drain Back-Pressure: The continuous lifespan of the front shaft lip seal is highly dependent on internal case pressure. The drain piping must run directly and independently back into the oil reservoir without merging into main return blocks or passing through restrictive non-return valves. Continuous case pressure must not exceed 1.2 bar (with temporary transient peaks ≤2 bar) to prevent shaft seal blowout.
Enforce Tight Fluid Cleanliness Parameters: The precise micron-level operational clearances inside piston blocks are highly vulnerable to fine particulate scratching. System fluid contamination profiles must be rigidly managed to match or exceed ISO 4406 19/16/13 (NAS Class 7). Install a dedicated high-efficiency ≤10μm absolute pressure filter with diagnostic clogging indicators to ensure reliable operation.



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