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INFLUENCE OF UNDERBODY SUSPENDED EQUIPMENT ON RAIL RIDE COMFORT

机译:车身悬架设备对滑行舒适性的影响

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This paper illustrates a methodology that, by means of laboratory and on-track tests, allows for an appropriate design of the connection elements between the suspended equipment and the carbody in order to enhance the rail ride comfort. In particular at first the connection elements are tested in laboratory to assess their visco-elastic behaviour simulating the common operating conditions. Subsequently on-track tests and experimental modal analysis are carried out to identify the interaction between underframe equipment motions and carbody modes. In the experimental tests, starting from the laboratory test results, it is possible to define the connection elements in order to minimise the negative influence on vehicle ride comfort. Two different solutions are proposed: the "TMD solution" (the suspension is tuned on the natural frequency of the carbody mode most relevant from the comfort point of view) and the "suspended solution" (the suspension system aims to decouple the two subsystems).
机译:本文阐述了一种方法,该方法通过实验室和在轨测试,可以对悬架设备和车身之间的连接元件进行适当的设计,以提高铁路行驶的舒适性。特别地,首先,在实验室中对连接元件进行测试,以评估它们的粘弹行为,从而模拟常见的工作条件。随后进行了现场测试和实验模态分析,以确定底架设备运动与车身模式之间的相互作用。在实验测试中,从实验室测试结果开始,可以定义连接元件,以最大程度地减少对车辆行驶舒适性的负面影响。提出了两种不同的解决方案:“ TMD解决方案”(从舒适性角度出发,悬架根据车身模式的固有频率进行调整)和“悬架解决方案”(悬架系统旨在将两个子系统解耦) 。

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