Brand Name: | SY Hydraulic |
Model Number: | SY-A6VM |
MOQ: | 1pc |
Price: | USD 1000-3000 / pc |
Payment Terms: | T/T |
Supply Ability: | 1000 pcs per month |
Construction Machinery Piston Motor 200cc/r Heavy-Duty Design 580L/min Oil Flow
Features:
1. Axial piston swash plate structure
2. Integrated flushing valve option
3. Multiple displacement versions available (EP/HD, etc.)
4. Excellent thermal stability
5. Low-noise operation characteristics
6. High-response speed control
7. Heavy-duty application optimization
8. Modular interface for auxiliary functions
9. ISO 7368 mounting standard compliance
10. Low lifecycle maintenance cost
Technical data:
Size | NG | 80 | 107 | 140 | 160 | 200 | 250 | ||
Geometric displacement, per revolution | Vg max | cm3 | 80 | 107 | 140 | 160 | 200 | 250 | |
Vg min | cm3 | 0 | 0 | 0 | 0 | 0 | 0 | ||
Vg x | cm3 | 51 | 68 | 88 | 61 | 76 | 205 | ||
Maximum rotational speed(while adhering to the maximum permissible inlet flow) | at Vg max | nnom | rpm | 3900 | 3550 | 3250 | 3100 | 2900 | 2700 |
at Vg < Vg x | nmax | rpm | 6150 | 5600 | 5150 | 4900 | 4600 | 3300 | |
where Vg 0 | nmax | rpm | 7350 | 6300 | 5750 | 5500 | 5100 | 3300 | |
Inlet flow | at nnom and Vg max | qv max | l/min | 312 | 380 | 455 | 496 | 580 | 675 |
Torque | at Vg max and Δp = 400 bar | T | Nm | 509 | 681 | 891 | 1019 | 1273 | ‒ |
at Vg max and Δp = 350 bar | T | Nm | 446 | 596 | 778 | 891 | 1114 | 1391 | |
Rotary stiffness | Vg max to Vg/2 | cmin | kNm/rad | 16 | 21 | 34 | 35 | 44 | 60 |
Vg/2 to 0 (interpolated) | cmin | kNm/rad | 48 | 65 | 93 | 105 | 130 | 181 | |
Moment of inertia for rotary group | JTW | kgm2 | 0,008 | 0.0127 | 0.0207 | 0.0253 | 0.0353 | 0,061 | |
Maximum angular acceleration | α | rad/s² | 24000 | 19000 | 11000 | 11000 | 11000 | 10000 | |
Case volume | V | l | 1.2 | 1.5 | 1.8 | 2.4 | 2.7 | 3 | |
Weight approx. | m | kg | 36 | 46 | 61 | 62 | 78 | 100 |
Specifications:
Trademark | SY-Hydraulic |
Transport Package | Standard Export Wooden Case |
Certification | ISO9001: 2000 |
Type | Harvester axial piston motor |
Production Capacity | 1000 pcs/month |
HS Code | 8412299090 |
Application | Agricultural machinery (harvesters, tractors) |
Maximum speed | 6300 rpm |
Delivery Time | 15-30 Days after Payment |
Displacement | 71-250cc |
Applications:
Competitive Advantage:
1. Customization Capabilities: Over 20 modular options (shaft ends/flanges/controls) enable 7-day delivery for custom-built armored vehicles or aerospace ground support equipment.
2. With a focus on cost savings and operational efficiency, the Rexroth A6VM motor combines advanced variable control with a hydraulic pump, delivering smooth energy transfer, minimized mechanical losses, and superior system performance, thereby reducing maintenance costs and downtime while providing exceptional reliability in challenging industrial and mobile hydraulic applications, boosting efficiency and market leadership remarkably.
3. Equipped with intelligent control interfaces and broad compatibility, the Rexroth A6VM hydraulic motor seamlessly integrates with modern automation systems to enable real-time data monitoring and remote control; this axial piston motor helps customers optimize process flows and anticipate potential equipment failures, thereby reducing downtime and maintenance costs while significantly boosting overall production efficiency and operational safety.
The Analysis For Rexroth A6VM Piston Motor Common Breakdown:
1. Improper fluid viscosity adjustments can disrupt the A6VM motor’s delicate hydraulic balance, leading to inconsistent performance and potential cavitation; if the piston pump is also affected by viscosity variations, comprehensive fluid analysis and precise viscosity correction are mandatory to restore equilibrium and prevent further operational damage for consistent system efficiency.
2. When the Rexroth A6VM piston motor operates with noticeably low energy efficiency, it may be due to internal energy losses or suboptimal regulation within the hydraulic system. Low efficiency leads to higher energy consumption, overheating, and increased operational costs, potentially shortening the system’s lifespan. Optimizing the fluid circuit design and fine-tuning control parameters can significantly improve energy conversion in this hydraulic motor, ensuring a more cost-effective and sustainable operation.
3. Control Signal Drift: >5% command-feedback deviation may stem from sensor hysteresis or valve null shift. Recalibrate sensor linearity and adjust valve spool neutral.