The high speed flywheel test bench can achieve precise simulation of high speed, rapid dynamic response, and reproduce the actual operating conditions of the flywheel. Integrated real-time monitoring system for multiple parameters such as torque and speed, with high data acquisition accuracy. Adopting a modular structure design, it is adaptable to different specifications of flywheels and easy to install and debug. Equipped with multiple security measures to ensure efficient and stable testing.
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The gearbox for dynamometer is specially designed for power test scenarios. It adopts high-strength alloy gears and sealing structure, which is impact-resistant and wear-resistant, suitable for long-term continuous operation, and has low laboratory noise. It is widely compatible with eddy current and hydraulic dynamometer systems, simplifies the test process, and improves data reliability.
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High-speed shifting gearbox adopts dual clutch/synchronizer collaborative technology, with a shift response of ≤50ms and a transmission efficiency of over 97%. The gear set is ground and hardened, with a tooth surface hardness of HRC58-62, and can withstand impact torques of more than 3000N・m.
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ultra high speed test bench gearbox is specially designed for high-speed demand scenarios. Its maximum speed can reach 100,000rpm, which can meet the test requirements of new aviation materials, mechanical seals, etc. It adopts advanced technologies such as power splitting and spline load balancing.
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The flywheel high speed test bench can simulate multiple working conditions simultaneously, greatly improving the test efficiency. The high-precision sensor system monitors the speed and stress changes in real time, and the data collection accuracy reaches the industry-leading level. The modular design supports flexible configuration and adapts to the needs of multiple fields such as aerospace, new energy, etc.
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High-speed experimental gearbox is designed for harsh test scenarios. High speed and powerful transmission power. High gear precision and compliance with standards. Adopts hydrodynamic sliding bearings and temperature controllable. Can be customized according to user needs, providing accurate and stable transmission support for scientific research and industrial experiments.
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