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Low-Noise Harvester Axial Piston Motor for Snowplows 80cm³ 400 Bar Compact Design
Features:
1. Designed for high-pressure conditions to maintain performance under extreme loads.
2. Optimized construction and materials deliver excellent vibration damping performance.
3. High sealing integrity minimizes internal fluid leakage, reinforcing system reliability.
4. Rapid response design enables flexible control and adapts to instantaneous load changes.
5. Superior dynamic performance ensures stability and quick response under fluctuating loads.
6. Maintains high efficiency under variable load conditions
7. Modular design for simplified maintenance and serviceability
8. Low noise operation for enhanced workplace comfort
9. Enhanced vibration damping for improved operational stability
10. Optimized hydraulic flow paths for efficient fluid dynamics
Technical data:
Size | NG | 45 | 56 | 63 | 80 | 90 | 107 | 125 | 160 | 180 | ||
Displacement geometric, per revolution | Vg | cm3 | 45.6 | 56.1 | 63 | 80.4 | 90 | 106.7 | 125 | 160.4 | 180 | |
Speed maximum | nnom | rpm | 5600 | 5000 | 5000 | 4500 | 4500 | 4000 | 4000 | 3600 | 3600 | |
nmax | rpm | 6200 | 5500 | 5500 | 5000 | 5000 | 4400 | 4400 | 4000 | 4000 | ||
Input flow at nnom and Vg | qV | L/min | 255 | 281 | 315 | 362 | 405 | 427 | 500 | 577 | 648 | |
Torque at Vg and | Δp = 350 bar | T | Nm | 254 | 313 | 351 | 448 | 501 | 594 | 696 | 893 | 1003 |
Δp = 400 bar | T | Nm | 290 | 357 | 401 | 512 | 573 | 679 | 796 | 1021 | 1146 | |
Rotary stiffness | c | kNm/rad | 4.18 | 5.94 | 6.25 | 8.73 | 9.14 | 11.2 | 11.9 | 17.4 | 18.2 | |
Moment of inertia for rotary group | JGR | kgm2 | 0.0024 | 0.0042 | 0.0042 | 0.0072 | 0.0072 | 0.0116 | 0.0116 | 0.022 | 0.022 | |
Maximum angular acceleration | a | rad/s2 | 14600 | 7500 | 7500 | 6000 | 6000 | 4500 | 4500 | 3500 | 3500 | |
Case volume | V | L | 0.33 | 0.45 | 0.45 | 0.55 | 0.55 | 0.8 | 0.8 | 1.1 | 1.1 | |
Mass (approx.) | m | kg | 13.5 | 18 | 18 | 23 | 23 | 32 | 32 | 45 | 45 |
Specifications:
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Applications:
Competitive Advantage:
1. With superior engineering and advanced control technology, our hydraulic motor guarantees outstanding responsiveness and smooth operation in complex systems, enabling precise adjustments and real-time performance monitoring while significantly lowering noise levels, vibration, and wear, resulting in extended service intervals, reduced maintenance expenses, and enhanced overall system productivity and safety across various demanding industrial applications worldwide, ensuring exceptional performance always reliably.
2. Utilizing cutting-edge materials and innovative manufacturing processes, our axial piston motor is designed for extreme performance and longevity, delivering precise control, high efficiency, and consistent power output under variable loads while offering exceptional resistance to wear and corrosion, making it a trusted component for high-performance industrial machinery and critical applications, ensuring maximum durability and superior performance always consistently.
3. Engineered to exceed industry standards, our piston motor offers a balanced combination of high torque, precise control, and robust construction that effectively minimizes downtime and energy loss while providing reliable performance under diverse operating conditions, supporting seamless automation and ensuring optimal productivity, making it a superior choice for both standard and specialized industrial processes, delivering unmatched efficiency every single time consistently.
The Analysis For Rexroth A2FE Fixed Displacemen Piston Motor Common Breakdown:
1. With superior engineering and advanced control technology, delayed system response may be caused by sensor lag, signal transmission issues, or mismatches in control algorithms, resulting in delayed motor start-up and speed adjustments that adversely affect production efficiency and equipment stability. This fault can disrupt system coordination. It is recommended to calibrate sensors, inspect wiring, and update software to restore response and precise control in the hydraulic motor.
2. Abnormal vibration may result from improper installation, loose components, or structural imbalance, leading to unstable operation, increased noise, and premature wear. Continuous vibration threatens system reliability, so it is advisable to perform calibration, secure loose parts, and verify balance to ensure the axial piston motor operates steadily over the long term, maintaining consistent performance and durability for safety.
3. An excessively low hydraulic oil temperature can result in abnormally high fluid viscosity, leading to delayed system response and reduced lubrication effectiveness. In cold conditions, the oil may not achieve optimal flow, potentially causing difficult motor start-up and poor internal circulation. It is recommended to preheat the oil and adjust ambient conditions to ensure proper performance of the hydraulic motor.