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首页> 外文期刊>Proceedings of the institution of mechanical engineers >The coupled effects of bending and torsional flexural modes of a high-speed train car body on its vertical ride quality
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The coupled effects of bending and torsional flexural modes of a high-speed train car body on its vertical ride quality

机译:高速列车车体弯曲和扭转弯曲模式对其垂直行驶质量的耦合效应

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This study is focused on the effects of bending and torsional flexural modes of the car body on the ride quality index of a high-speed train vehicle. The Euler-Bernoulli beam model is used to extract an analytical model for a high-speed train vehicle car body in order to investigate its bending and torsional flexural vibrations. The rigid model includes a car body, two bogie frames, and four wheelsets such that, each mass has three degrees of freedom including vertical displacement, pitch motion, and roll motion. The results obtained with the proposed analytical model are compared with experimental measurements of the car body response of a Shinkansen high-speed train. Moreover, it is determined that the bending and torsional flexural modes have significant effects on the vertical acceleration of the car body, particularly in the 9-15 Hz frequency range. Furthermore, the ride quality index is calculated according to the EN 12299 standard and it is shown that the faster the train the more affected is the ride quality by the flexural modes. In addition, the effect of coherence between two rail irregularities (the right and the left rails) on the results of the simulation is investigated. The results conclude that if the irregularities are completely correlated the torsional flexural mode of the car body does not appear in the response. Also, the first bending flexural mode in such cases is more excited compared with the partially correlated or uncorrelated rail irregularities. Therefore, the ride quality index in completely correlated cases is higher than other cases.
机译:这项研究的重点是车身的弯曲和扭转弯曲模式对高速火车车辆乘坐质量指标的影响。 Euler-Bernoulli梁模型用于提取高速火车车体的分析模型,以研究其弯曲和扭转挠曲振动。刚性模型包括一个车身,两个转向架框架和四个轮对,从而每个质量具有三个自由度,包括垂直位移,俯仰运动和侧倾运动。通过提出的分析模型获得的结果与新干线高速列车的车身响应的实验测量结果进行了比较。此外,已经确定弯曲和扭转弯曲模式对车身的垂直加速度具有显着影响,特别是在9-15Hz频率范围内。此外,根据EN 12299标准计算了乘车质量指数,结果表明,火车速度越快,弯曲模式对乘车质量的影响越大。此外,还研究了两个轨道不平整度(左右轨道)之间的连贯性对仿真结果的影响。结果得出结论,如果不规则性完全相关,则车身扭转扭转模式不会出现在响应中。而且,与部分相关或不相关的轨道不规则相比,在这种情况下的第一弯曲挠曲模式更令人兴奋。因此,完全相关情况下的乘车质量指数高于其他情况。

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