Two-way Hertzian spring in numerical analysis of coupled train-track system vibrations

D. Bryja, W. Chojnacki
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引用次数: 0

Abstract

The paper presents and compares two methods for simulation the train-track system vibrations, differing in the wheel-rail contact model used. In the first method, two-way Hertzian spring is used, in the second – a non-deformable constraint. In both methods, a flat computational model is assumed, consisting of an Euler-Bernoulli beam resting on a Winkler-type elastic foundation with damping and a set of rail vehicles modeled by dynamic systems with ten degrees of freedom. The results of numerical analysis are presented, in order to determine an influence of the contact constraints’ deformability on the vibration simulations. It is found that the replacement of non-deformable contact constraints by two-way Hertzian springs has no significant effect on track vibration simulations and has a little effect on vibration simulations of vehicle body and bogie. The developed simulation method can be used for numerical studies of the phenomenon of instantaneous detachments of wheels from rails, after minor modifications directed to introduce one-way Hertzian springs (i.e. not carrying tensile forces) being a more accurate contact model.
列车-轨道系统耦合振动数值分析中的双向赫兹弹簧
本文提出并比较了两种模拟列车轨道系统振动的方法,这两种方法不同于所使用的轮轨接触模型。在第一种方法中,使用双向赫兹弹簧,在第二种方法中使用不可变形约束。在这两种方法中,都假设了一个平面计算模型,由一根位于带阻尼的Winkler型弹性地基上的欧拉-伯努利梁和一组由十自由度动态系统建模的轨道车辆组成。给出了数值分析的结果,以确定接触约束的变形能力对振动模拟的影响。研究发现,用双向赫兹弹簧代替非变形接触约束对轨道振动模拟没有显著影响,对车体和转向架的振动模拟影响很小。所开发的模拟方法可用于车轮与轨道瞬间分离现象的数值研究,在进行了小的修改后,引入了单向赫兹弹簧(即不承受拉力),这是一个更准确的接触模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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