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Reduction of Contact Force Fluctuation for Rotary Wear Test Apparatus

机译:旋转磨损试验装置的接触力波动的降低

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摘要

In electric railway systems, wear of current collector devices leads to high maintenance cost. To develop a cost reduction methodology, the wear behavior of current collector materials needs to be fully investigated. However, the wear test apparatuses currently in use cannot control the contact force between materials, and the contact force fluctuates. It is difficult to classify accurate conditions of a wear transition under contact force fluctuation. To solve this problem, we propose a force control system with acceleration and velocity feedbacks to suppress the force fluctuation. The positive feedback of acceleration compensates the periodic force fluctuation at frequencies according to the sliding velocity of rubbing surfaces. The velocity feedback compensates the force fluctuation caused by resonance. The proposed control system is validated by experiments using a prototype of a rotary wear test apparatus.
机译:在电气铁路系统中,集电器设备的磨损导致高维护成本。 要开发成本降低方法,需要全面调查集电器材料的磨损行为。 然而,当前使用的磨损测试装置不能控制材料之间的接触力,接触力波动。 难以在接触力波动下对磨损过渡的准确条件进行分类。 为了解决这个问题,我们提出了一种具有加速度和速度反馈的力控制系统来抑制力波动。 加速度的正反馈根据摩擦表面的滑动速度补偿频率下的周期性波动。 速度反馈补偿由谐振引起的力波动。 通过使用旋转磨损试验装置的原型进行实验验证所提出的控制系统。

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