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Active Electrorheological Damper for Railway Vehicle Couplers

机译:铁路车载耦合器的主动电风学阻尼器

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This paper presents the development of an active damper for the couplers of railway vehicles using electrorheological (ER) fluid as a functional material. The purpose of design of the presented damper is to absorb the longitudinal impact from the coupler to the railway vehicle body, which is a very important design factor for the structure of the super express bullet train Sinkansen. A prototype damper is fabricated, which consists of a hydraulic cylinder, an ER bypass slit valve and a PID controller. The buffer force is developed in the ER fluid both through the bypass slit and at the piston-cylinder gap, and is controlled by adjusting the applied electric field to the ER fluid. Active control tests were carried out on the problem where the shaft reaction force is retained at a constant prescribed strength while the shaft is translating at a sinusoidally-varying velocity. A bang-bang and PID switching controller is introduced to prevent the reset-wind-up phenomenon. Results show that the coupler force of the railway vehicle can be controlled effectively by using the proposed electrorehological bypass damper.
机译:本文介绍了使用电气学(ER)流体作为功能材料的铁路车辆耦合器的活跃阻尼器的开发。所提出的阻尼器的设计的目的是吸收与耦合器到铁路车身的纵向冲击,这是超快递子弹雨水结构的一个非常重要的设计因素。制造原型阻尼器,由液压缸,ER旁路狭缝阀和PID控制器组成。缓冲力在通过旁通狭缝和活塞 - 圆筒间隙中在ER流体中开发,并且通过将施加的电场调节到ER流体来控制。在轴在轴在正弦状速度下平移时,对轴反作用力保持在恒定规定的强度的问题上进行主动控制测试。引入BANG-BANG和PID开关控制器以防止复位卷积现象。结果表明,通过使用所提出的电气医药旁路阻尼器,可以有效地控制铁路车辆的耦合力。

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