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Eulerian models of the rotating flexible wheelset for high frequency railway dynamics

机译:高频铁路动力学旋转柔性轮对的欧拉模型

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In this paper three formulations based on an Eulerian approach are presented to obtain the dynamic response of an elastic solid of revolution, which rotates around its main axis at constant angular velocity. The formulations are especially suitable for the study of the interaction of a solid with a non-rotating structure, such as occurs in the coupled dynamics of a railway wheelset with the track. With respect to previous publications that may adopt similar hypotheses, this paper proposes more compact formulations and eliminates certain numerical problems associated with the presence of second-order derivatives with respect to the spatial coordinates. Three different models are developed depending the basis function that represents the displacements associated with the deformation; these basis functions are: (1) the shape functions that are used in the three dimensional finite element (FE) method; (2) the undamped mode shapes of the solid; (3) the shape functions that are adopted in the axisymmetric FE approach. Comparisons are shown of calculations carried out using these models. These show the existence of modal veering when analysing the Campbell diagram for a railway wheel. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了三种基于欧拉方法的制剂,以获得旋转弹性固体的动态响应,其在恒定角速度下围绕其主轴旋转。制剂特别适用于使用非旋转结构的固体的相互作用研究,例如发生在具有轨道的铁路轮键的耦合动力学中。关于可以采用类似假设的先前出版物,本文提出了更紧凑的制剂,并消除了与空间坐标相对于空间坐标的二阶导数相关的某些数值问题。开发了三种不同的模型,根据代表与变形相关的位移的基本函数;这些基本函数是:(1)三维有限元(Fe)方法中使用的形状函数; (2)固体的透明模式形状; (3)轴对称Fe接近采用的形状功能。显示使用这些模型进行的计算进行比较。这些显示在分析铁路轮的坎贝尔图时模态转向的存在。 (c)2019 Elsevier Ltd.保留所有权利。

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