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EFFECTS OF NON-HERTZIAN CONTACT MODELS ON DERAILMENT SIMULATION

机译:非赫兹接触模型对疲劳模拟的影响

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The derailment of trains is a complex phenomenon that requires an elaborate contact model in simulation to better understand its mechanism. The CONTACT program is a well-known reference for wheel-rail contact modeling due to its high accuracy. However, its low computational efficiency restricts its applications especially in the context of a multi-body simulation. Therefore, a high computational efficient, simplified and approximate non-Hertzian contact is preferred in derailment simulation. The aim of this research is to verify the efficiency of a recently developed non-Hertzian wheel-rail contact model in derailment simulation, which is a combination of the Kik-Piotrowski model and the KB TNH that is a fast creep force solver for non-Hertzian contacts. To assess the performance of the non-Hertzian model in derailment simulation, the derailment coefficient for steady-state and quasi-steady conditions, the wheel/rail contact forces during flange contact, and the dynamics behaviors of the wheelset prior to the derailment are compared with the state of the art contact methods representing different levels of modeling complexity, accuracy and efficiency, namely the classical approach (Hertz theory+FASTSIM algorithm) and the 'exact'solver CONTACT.
机译:火车出轨是一个复杂的现象,需要在仿真中建立详尽的接触模型以更好地了解其机理。 CONTACT程序由于其高精度而成为轮轨接触建模的著名参考。但是,它的低计算效率限制了它的应用,尤其是在多体仿真的情况下。因此,在脱轨仿真中优选高计算效率,简化且近似的非赫兹接触。这项研究的目的是验证脱轨仿真中最新开发的非赫兹轮-轨接触模型的效率,该模型是Kik-Piotrowski模型和KB TNH的组合,KB TNH是非惯性的快速蠕变力求解器赫兹联系方式。为了评估非赫兹模型在出轨模拟中的性能,比较了稳态和准稳态条件下的出轨系数,法兰接触期间的轮/轨接触力以及出轨前轮对的动力学行为接触方法代表了建模复杂性,准确性和效率的不同水平,即经典方法(赫兹理论+ FASTSIM算法)和“精确”求解器CONTACT。

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