首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >Non-linear vibration analysis of a 2-DOF railway vehicle model under random rail excitation
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Non-linear vibration analysis of a 2-DOF railway vehicle model under random rail excitation

机译:随机轨道激励下两自由度铁路车辆模型的非线性振动分析

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With increase in the axle load and wagon speed, the cost of damage to rail track and wagon components increases significantly. This leads to widespread interests in the investigation of the dynamic interactions of the rail track and the wagon. Rail irregularities are one of the important vibration sources of the rail track structure and train. These irregularities have generally random distribution that are assumed to be stationary random and ergodic processes in space, with Gaussian amplitude probability densities and zero mean values. In this paper, the dynamic response of the railway vehicle due to random irregularity of rail track is analysed. The wagon is modelled as a two degrees-of-freedom non-linear model where includes non-linear spring and linear damper of primary suspension system. The Hertzian contact theory is used to obtain the relationship between normal contact force and the displacement of the mass centre of the wheel. Using the method of multiple scales the analytical approximate response of the railway vehicle due to track irregularities is obtained. The amplitudes of vibrations of the vehicle and the interaction forces between the vehicle and the rail for different line grades and train speeds have been analysed analytically by this model. According to the results, rail irregularities have more effect on the vertical acceleration of the vehicle than the train speed.
机译:随着轴载荷和货车速度的增加,损坏铁路轨道和货车部件的成本大大增加。这引起了对轨道和货车的动态相互作用的研究的广泛兴趣。轨道不规则是轨道结构和火车的重要振动源之一。这些不规则性通常具有随机分布,被认为是空间中的平稳随机和遍历过程,具有高斯振幅概率密度和零平均值。本文分析了轨道随机不规则引起的铁路车辆动力响应。货车被建模为两个自由度的非线性模型,其中包括非线性弹簧和主悬架系统的线性阻尼器。赫兹接触理论用于获得法向接触力与车轮质心位移之间的关系。使用多尺度方法获得了由于轨道不平顺而引起的铁路车辆的解析近似响应。通过该模型分析了不同线路坡度和列车速度的车辆振动幅度以及车辆与轨道之间的相互作用力。根据结果​​,与火车速度相比,铁路不规则对车辆的垂直加速度的影响更大。

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