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A fast method for determination of creep forces in non-Hertzian contact of wheel and rail based on a book of tables

机译:基于桌子的轨道非赫兹触点确定蠕变力的快速方法

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The Kalker book of tables for non-Hertzian contact described in a previous work from the authors provides creep forces, but the moment generated in the contact patch is not available. The extended Kalker book of tables for non-Hertzian contact (KBTNH) presented in this paper provides creep forces, as well as the moment. The paper presents the simplified linear theory of rolling contact for a simple double-elliptical contact (SDEC) region used for regularisation of contact patches and, resulting from this theory, the full symmetry relations for creep forces and moment. The parameterisation of variables and structure of the extended book of tables are described. The extended Kalker book of tables of moderate volume has been computed in co-simulation Matlab-CONTACT. The creep forces and moment obtained from KBTNH have been compared to those obtained directly by CONTACT program and FASTSIM algorithm. The comparison shows that KBTNH is in good agreement with CONTACT for a wide range of creepage conditions and shapes of the contact patch, whereas the use of FASTSIM may lead to significant deviations from the reference CONTACT solutions. The presented example of application is a realistic case of a freight wagon curving simulation, where KBTNH has been used to assess the contribution of the moment into the unit frictional work dissipated in contacts of wheels and rails. The high calculation speed and good accuracy of determining creep forces for non-Hertzian wheel-rail contact make the proposed method a suitable tool for multibody system (MBS) simulation programs oriented for rail vehicle dynamics.
机译:来自作者的前一项工作中描述的非赫兹联系人的kalker书籍提供了蠕变力量,但在联系补丁中产生的那一刻不可用。本文提出的非赫兹联系人(KBTNH)的延长kalker桌子提供了蠕变力量,以及那一刻。本文介绍了用于对接触贴片正规化的简单双椭圆接触(SDEC)区域的简化线性理论,由该理论引起的蠕变力和时刻的完全对称性关系。描述了表格的扩展簿的变量和结构的参数。在共模Matlab-Contact中计算了中等卷的扩展Kalker簿。将从KBTNH获得的蠕变力和时刻与直接通过接触程序和快速算法直接进行了比较。比较表明,KBTNH与接触良好的达爬屑条件和触点贴片的形状良好,而Fastsim的使用可能导致与参考接触解决方案的显着偏差。所呈现的应用示例是货车弯曲仿真的现实情况,其中KBTNH用于评估当时进入轮子和轨道接触的单位摩擦工作中的贡献。确定非赫斯轮轨道接触的蠕变力的高计算速度和良好精度使得提出的方法是针对轨道车辆动态的多体系系统(MBS)模拟程序的合适工具。

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