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An experimental study on constructing MR secondary suspension for high-speed trains to improve lateral ride comfort

机译:为高速列车建造MR辅助悬架以提高侧向乘坐舒适性的实验研究

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This paper presents an experimental study on constructing a tunable secondary suspension for high-speed trains using magneto-rheological fluid dampers (referred to as MR dampers hereafter), in the interest of improving lateral ride comfort. Two types of MR dampers (type-A and type-B) with different control ranges are designed and fabricated. The developed dampers are incorporated into a secondary suspension of a full-scale high-speed train carriage for rolling-vibration tests. The integrated rail vehicle runs at a series of speeds from 40 to 380 km/h and with different current inputs to the MR dampers. The dynamic performance of the two suspension systems and the ride comfort rating of the rail vehicle are evaluated using the accelerations measured during the tests. In this way, the effectiveness of the developed MR dampers for attenuating vibration is assessed. The type-A MR dampers function like a stiffness component, rather than an energy dissipative device, during the tests with different running speeds. While, the type-B MR dampers exhibit significant damping and high current input to the dampers may adversely affect the ride comfort. As part of an ongoing investigation on devising an effective MR secondary suspension for lateral vibration suppression, this preliminary study provides an insight into dynamic behavior of high-speed train secondary suspensions and unique full-scale experimental data for optimal design of MR dampers suitable for high-speed rail applications.
机译:本文提出了使用磁流变流体阻尼器(以下称为MR阻尼器)构造用于高速列车的可调二级悬架的实验研究,目的是提高横向乘坐舒适性。设计并制造了两种具有不同控制范围的MR阻尼器(A型和B型)。研发的阻尼器被并入全尺寸高速火车车厢的辅助悬架中,用于滚动振动测试。集成式轨道车辆以40至380 km / h的一系列速度运行,并且向MR阻尼器输入的电流不同。使用测试期间测得的加速度评估两个悬架系统的动态性能以及铁路车辆的乘坐舒适性等级。通过这种方式,可以评估开发的MR阻尼器衰减振动的有效性。在具有不同运行速度的测试过程中,A型MR阻尼器的功能类似于刚度组件,而不是耗能设备。同时,B型MR减震器显示出显着的减震效果,并且向减震器输入的大电流可能会对乘坐舒适性产生不利影响。作为正在进行的有关设计有效的MR次级悬架以抑制侧向振动的研究的一部分,该初步研究提供了对高速列车次级悬架动力学行为的了解,并提供了独特的满量程实验数据,以优化适用于高功率的MR阻尼器。高速铁路应用。

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