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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Prediction of corrugation in rails using a non-stationary wheel-rail contact model
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Prediction of corrugation in rails using a non-stationary wheel-rail contact model

机译:使用非平稳轮轨接触模型预测轨道中的波纹

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摘要

Most of the models used for simulating the conditions existing in the wheel-rail contact are based on stationary theories. In such theories, the parameters associated with the wheel-rail contact are independent on the conditions applied on it previously. This supposition is a simplification of the real phenomenon, whose validity lies in the rapid convergence of the contact parameters to their stationary values. However, the conditions simulated by means of non-stationary theories may differ from those obtained by using stationary theories when external conditions vary rapidly. Certain types of rail corrugation may be related to high-frequency normal or tangential forces transmitted through the contact, which may determine the effect of the temporal history on the contact parameters, and consequently on the rail wear. In order to investigate the influence of the contact process on the results of models of corrugation calculation, a methodology for estimating the rail wear depth due to a wheel running on a stretch of rail is developed. The method implements an improved contact model where non-stationary hypotheses and an exact elastic model are taken into account. The results show the influence of the more realistic hypotheses adopted in the proposed method.
机译:用于模拟轮轨接触中存在条件的大多数模型都是基于固定理论的。在这样的理论中,与轮轨接触相关的参数独立于先前施加的条件。这种假设是对真实现象的简化,其真实性在于接触参数快速收敛到其固定值。但是,当外部条件快速变化时,通过非平稳理论模拟的条件可能不同于通过使用平稳理论获得的条件。某些类型的轨道波纹可能与通过接触传递的高频法向力或切向力有关,这可能会确定时间历史对接触参数的影响,并因此决定轨道磨损的影响。为了研究接触过程对波纹计算模型结果的影响,开发了一种方法来估算由于车轮在一段钢轨上行驶而引起的钢轨磨损深度。该方法实现了一种改进的接触模型,其中考虑了非平稳假设和精确的弹性模型。结果显示了所提出方法中采用的更现实的假设的影响。

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