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Pressurized magnetorheological dampers for train suspension

机译:列车悬架的加压磁流变阻尼器

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The objective of this paper is to develop a pressurized magnetorheological (MR) damper which is suitable for train suspension in order to improve the ride comfort of passengers. A double-ended MR damper is designed and fabricated. The custom-made MR damper is pressurized in order to eliminate the force-lag problem. Then the MR damper is mathematically modeled with experimental validation and then integrated with the railway vehicle model. An on-off semi-active control strategy based on the measurement of the absolute lateral velocity of the car body is adopted for the semi-active suspension system. The performances of the semi-active train suspension system using MR dampers are evaluated by comparing with the passive, passive-on-H and passive-on-L suspension systems. The results indicate that when the human sensation of ride comfort is considered, the semi-active suspension with the developed MR dampers can substantially improve the ride quality of the passengers.
机译:本文的目的是开发一种适用于火车悬架的加压磁流变(MR)阻尼器,以提高乘客的乘坐舒适性。设计并制造了双端MR阻尼器。定制的MR阻尼器经过加压,以消除力滞问题。然后通过实验验证对MR阻尼器进行数学建模,然后与铁路车辆模型集成。半主动悬架系统采用基于车身绝对侧向速度测量的开关半主动控制策略。通过与被动式,H型被动式和L型被动式悬架系统进行比较,评估了使用MR阻尼器的半主动式列车悬架系统的性能。结果表明,当考虑到人类对乘坐舒适性的感觉时,带有开发的MR减震器的半主动悬架可以大大改善乘客的乘坐质量。

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