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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Development of a Model for the Prediction of Wheel and Rail Wear in the Railway Field
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Development of a Model for the Prediction of Wheel and Rail Wear in the Railway Field

机译:铁路领域轮轨磨损预测模型的开发

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The wear prediction at the wheel-rail interface is a fundamental problem in the railway field, mainly correlated to the planning of maintenance interventions, vehicle stability, and the possibility of researching strategies for the design of optimal wheel and rail profiles from the wear point of view. The authors in this work present a model specifically developed for the evaluation of the wheel and rail wear and of the wheel and rail profiles evolution. The model layout is made up of two mutually interactive parts: a vehicle model for the dynamical analysis and a model for the wear estimation. The first one is a 3D multibody model of a railway vehicle where the wheel-rail interaction is implemented in a C/C++ user routine. Particularly, the research of the contact points between wheel and rail is based on an innovative algorithm developed by authors in previous works, while normal and tangential forces in the contact patches are calculated according to the Hertz and Kalker's global theory, respectively. The wear model is mainly based on experimental relationships found in literature between the removed material by wear and the energy dissipated by friction at the contact. It starts from the outputs of the dynamical simulations (position of contact points, contact forces, and global creepages) and calculates the pressures inside the contact patches through a local contact model; then, the material removed by wear is evaluated and the worn profiles of wheel and rail are obtained. In order to reproduce the wear evolution, the overall mileage traveled by the vehicle is divided into discrete steps, within which the wheel and rail profiles are constant; after carrying out the dynamical simulations relative to one step, the profiles are updated by means of the wear model. Therefore, the two models work alternately until completing the whole mileage. Moreover, the different time scales characterizing the wheel and rail wear evolutions require the development of a suitable strategy for the profile update; the strategy proposed by the authors is based both on the total distance traveled by the vehicle and on the total tonnage burden on the track. The entire model has been developed and validated in collaboration with Trenitalia S.p.A. and Rete Ferroviaria Italiana (RFI), which have provided the technical documentation and the experimental results relating to some tests performed with the vehicle DMU Aln 501 Minuetto on the Aosta-Pre Saint Didier line.
机译:轮轨界面的磨损预测是铁路领域的一个基本问题,主要与维护干预措施的规划,车辆的稳定性以及从轮胎的磨损点研究设计最佳轮轨轮廓的策略的可能性有关。视图。这项工作的作者提出了一个专门开发的模型,用于评估车轮和轨道磨损以及车轮和轨道轮廓的演变。模型布局由两个相互交互的部分组成:用于动力学分析的车辆模型和用于磨损估计的模型。第一个是铁路车辆的3D多体模型,其中轮轨相互作用在C / C ++用户例程中实现。特别是,车轮和钢轨之间的接触点的研究是基于作者在以前的工作中开发的创新算法,而接触面片中的法向力和切向力分别根据Hertz和Kalker的全局理论进行计算。磨损模型主要基于文献中的实验关系,该关系是由于磨损而去除的材料与接触处的摩擦耗散的能量之间的关系。它从动态模拟的输出(接触点的位置,接触力和整体爬电距离)开始,并通过局部接触模型计算接触贴片内部的压力;然后,评估通过磨损去除的材料,并获得车轮和轨道的磨损轮廓。为了重现磨损的演变过程,将车辆行驶的总里程分为多个独立的步骤,在这些步骤中,车轮和轨道轮廓保持恒定;在执行相对于一个步骤的动力学模拟后,通过磨损模型更新轮廓。因此,两个模型交替工作直到完成整个行驶里程。此外,表征轮毂和轨道磨损变化的不同时间尺度要求开发一种合适的策略来更新轮廓。作者提出的策略既基于车辆行驶的总距离,又基于轨道上的总吨位负担。整个模型是与Trenitalia SpA和Rete Ferroviaria Italiana(RFI)合作开发并验证的,它们提供了与在Aosta-Pre Saint Didier上使用车辆DMU Aln 501 Minuetto进行的某些测试有关的技术文档和实验结果。线。

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