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NUMERICAL PROCEDURE FOR NON-HERTZIAN WHEEL-RAIL CONTACT MODEL INTEGRATED IN QUASI-STEADY RAILWAY VEHICLE MOTION SOLVER

机译:准稳态铁路车辆运动求解器中集成的非赫兹轮轨道触点型号的数值步骤

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摘要

Although the Hertzian contact theory is widely utilized in railway vehicle simulations with new wheel and rail profiles, the Hertzian contact assumptions would lead to inaccurate contact prediction for severely worn wheel and rail profiles due to their geometric conformity, causing non-elliptical contact shapes as well as pressure distribution. For this reason, various non-Hertzian contact models have been studied for use in vehicle dynamics simulations. Among others, a method proposed by Piotrowski and Kik has gained acceptance in predicting non-elliptical wheel-rail contact for vehicle dynamics simulations. Despite the elegant formulation and its accuracy, detailed online geometric calculation for non-elliptical contact shape is required for all the contact patches at every iteration, along with iterative evaluation of the force-deflection relationship. It leads to computation burdens for use in long-distance vehicle simulations. Therefore, in this study, an off-line based numerical procedure for non-Hertzian contact model is developed and integrated in the quasi-steady railway vehicle motion solver.
机译:虽然赫斯氏接触理论广泛利用了新车轮和轨道轮廓的铁路车辆模拟,但由于其几何整合,赫兹触点假设将导致严重磨损的车轮和轨道型材的接触预测不准确,导致非椭圆接触形状作为压力分布。因此,已经研究了各种非赫兹联络模型以用于车辆动态模拟。其中,Piotrowski和Kik提出的方法在预测用于车辆动力学模拟的非椭圆形轮轨接触方面获得了接受。尽管配方优雅及其准确性,但在每次迭代时,所有接触贴片都需要详细的非椭圆接触形状的在线几何计算,以及对力偏转关系的迭代评估。它导致计算负担用于远程车辆模拟。因此,在该研究中,在准稳态铁路车辆运动求解器中开发并集成了基于非赫兹接触模型的基于离线数值过程。

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