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Prediction of wheel wear in urban railway transport: comparison of existing models

机译:城市铁路运输中车轮磨损的预测:现有模型的比较

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One of the most important maintenance costs in tramway transport comes from wear of wheel profiles. In the highly competitive railway market, the prediction of wear is then a major concern of the constructors. In this article, we present and compare four models well adapted to tramway conditions, involving contacts on the rolling tread and on the flange with very different sliding and pressure conditions. Moreover, all models can be implemented from the natural outputs of the railway simulation packages classically used in industry for the dynamics design of the vehicles. The first one, proposed by Jendel, is based on the well-known Archard's wear model. Enblom continues Jendel's approach by taking into account the contribution of wheel deformation on the sliding velocity. The last two models, developed by Zobory, and Pearce and Sherratt, determine the wear from the energy dissipation in the contact area. The models are first compared on a theoretical basis and, for that purpose, are rewritten in a common form. Two cases are distinguished: mild wear as arising on the rolling tread and severe wear as arising on the flange. The models are also compared in the practical case of an urban transport vehicle running on circular tracks with different curve radii. Although the models show equivalent trends according to the theoretical study, important discrepancies appear between estimated wear depths. All models are actually dependent on experimental coefficients and it is likely that they were estimated in different conditions. On the other hand, a reasonable agreement can be found in some particular conditions. As an example, Zobory's, Enblom's and Jendel's models are very close to each other in severe wear conditions. This work shows that a general and reliable model could probably be developed from all positive aspects of the existing ones.
机译:电车运输中最重要的维护成本之一是车轮轮廓的磨损。因此,在竞争激烈的铁路市场中,磨损的预测成为施工人员的主要考虑因素。在本文中,我们介绍并比较了四种非常适合电车状况的模型,其中涉及滚动胎面和法兰上的接触,它们的滑动和压力状况非常不同。此外,所有模型都可以从工业上经典用于车辆动力学设计的铁路仿真软件包的自然输出中实现。 Jendel提出的第一个基于著名的Archard磨损模型。 Enblom通过考虑车轮变形对滑动速度的影响来延续Jendel的方法。由Zobory以及Pearce和Sherratt开发的最后两个模型是根据接触区域的能量消耗来确定磨损的。首先在理论上比较模型,并为此目的以通用形式重写模型。区分两种情况:在滚动胎面上产生的轻微磨损和在凸缘上产生的严重磨损。在城市运输车辆在具有不同曲线半径的圆形轨道上行驶的实际情况下,还对模型进行了比较。尽管根据理论研究,这些模型显示出相同的趋势,但估计的磨损深度之间仍存在重要差异。所有模型实际上都取决于实验系数,并且可能是在不同条件下估算的。另一方面,在某些特定条件下可以找到合理的协议。例如,在严重磨损的情况下,Zobory,Enblom和Jendel的模型彼此非常接近。这项工作表明,可以从现有模型的所有积极方面开发一个通用而可靠的模型。

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