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Estimation of Wheelset Natural Vibration Characteristics Based on Transfer Matrix Method with Various Elastic Beam Models

机译:基于各种弹性梁模型的传递矩阵法的轮键自然振动特性估计

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The elastic vibration of the wheelset is a potential factor inducing wheel-rail defects. It is important to understand the natural vibration characteristics of the flexible wheelset for slowing down the defect growth. To estimate the elastic free vibration of the railway wheelset with the multidiameter axle, the transfer matrix method (TMM) is applied. The transfer matrices of four types of elastic beam models are derived including the Euler–Bernoulli beam, Timoshenko beam, elastic beam without mass and shearing stiffness, and massless elastic beam with shearing stiffness. For each type, the simplified model and detailed models of the flexible wheelset are developed. Both bending and torsional modes are compared with that of the finite element (FE) model. For the wheelset bending modes, if the wheel axle is modelled as the Euler–Bernoulli beam and Timoshenko beam, the natural frequencies can be reflected accurately, especially for the latter one. Due to the lower solving accuracy, the massless beam models are not applicable for the analysis of natural characteristics of the wheelset. The increase of the dividing segment number of the flexible axle is helpful to improve the modal solving accuracy, while the computation effort is almost kept in the same level. For the torsional vibration mode, it mainly depends on the axle torsional stiffness and wheel inertia rather than axle torsional inertia.
机译:轮对的弹性振动是诱导背轨缺陷的潜在因子。了解柔性轮赛的自然振动特性非常重要,以减慢缺陷生长。为了估计利用MultiDiameter Axle的铁路轮的弹性自由振动,施加传递矩阵法(TMM)。推导出四种类型的弹性光束模型的传递矩阵,包括欧拉-Bernoulli梁,Timoshenko梁,没有质量和剪切刚度的弹性束,以及具有剪切刚度的无阻塞弹束。对于每种类型,开发了简化的模型和柔性轮赛的详细模型。将弯曲和扭转模式与有限元(FE)模型进行比较。对于轮键弯曲模式,如果车轮轴被建模为欧拉伯努利光束和Timoshenko梁,则可以精确地反映自然频率,特别是对于后者。由于较低的求解精度,无阻塞模型不适用于分析轮换的自然特性。柔性轴的分割段数的增加有助于提高模态求解精度,而计算工作几乎保持在同一级别。对于扭转振动模式,它主要取决于轴扭转刚度和车轮惯性而不是轴扭转惯性。

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