列车-轨道系统振动数值模拟中的粘弹性接触弹簧

P. Lalewicz, D. Bryja
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引用次数: 0

摘要

摘要:在列车-轨道耦合系统中,子系统之间的相互作用发生在轮轨接触中。最常见的接触模型是完全弹性的线性赫兹弹簧。它在数值模拟中有着广泛的应用。在更详细的相互作用模型中,考虑了轮轨接触中的能量耗散。文献中没有已知的这些模型的比较,这将表明特定解决方案应用的效果。本文的主要目的是分析和比较两种接触模型对列车轨道振动的数值模拟效果。所考虑的参考接触模型是线性化的、完全弹性的赫兹弹簧。作者提出的第二种弹簧在滞回阻尼的基础上增加了粘性单元。在轨道长度中间具有阈值不等式激励的平面、列车-轨道振动模拟中检验了这两种模型的应用及其影响。通过分析得出结论,在研究轨道应力和疲劳时,粘弹性接触模型的应用是重要的。此外,研究发现,在接触模型中忽略阻尼元件会降低轮轨接触损失现象的概率,从而导致对其发生的错误识别。关键词:轮轨接触;赫兹触点;线性化接触弹簧;列车/轨道动力学
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visco-elastic contact spring in numerical simulations of train – track system vibrations
Abstract: In train – track coupled systems, interaction between subsystems occurs in wheel- rail contact. The most common contact model is perfectly elastic, linearized Hert’z spring. It has wide range of application in numerical simulations. In more detailed interaction models, the energy dissipation in wheel-rail contact is taken into account. There are no known comparisons of these models in the literature, that would indicate the effects of a specific solution application. In this paper, the main purpose is to analyze and compare the effects of two contact models in terms of numerical simulations of train – track vibrations. The reference contact model taken into account is linearized, perfectly elastic Hert’z spring. The second spring, proposed by the authors is enriched with viscous element based on hysteresis damping. Application of both models, and its effects were examined in plane, train – track vibrations simulations with threshold inequality excitation in the middle of the track length. Concluding from the analyzes performed, it was found that viscoelastic contact model application is important, when track stresses and fatigue are being investigated. In addition, it was found that neglecting the damping element in contact model reduces the probability of the wheel – rail contact loss phenomenon, and thus leads to incorrect identification of its occurrence. Keywords: Wheel/rail contact; Hertz contact; Linearized contact spring; Train/track dynamics
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