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Methodology to characterize the Von Misses stress in the contact between wheel and rail (Test-Rig)

机译:表征von误区在车轮和轨道之间的接触中误判的方法(试验台)

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The aim of this work is to carry out a study about wheel-rail and wheel-roller interaction. The final objectives are the determination of the hertzian contact ellipse, the maximum contact pressure and the pressure distribution in the contact zone, as well as the von Mises stress in the wheel for their application in the design of bogie test rigs. In order to accomplish this task, two models have been developed: an analytical one based on the Hertz contact theory, and a numerical one using finite elements method. Analytical model is implemented over MATLAB. By this way, it is fast and easy to test and analyze the wheel-rail, wheel-roller and wheel-2 rollers interaction: different roller radii and two loading cases: 50 and 100 kN per wheel. For the numerical model, it has been designed in CREO Parametric the same elements tested in the analytical model. Then these components have been simulated by means of finite elements in CREO Simulate, refining the mesh in the contact zone. Contact analyses have been performed in the same conditions as the previous model, and contact areas, pressures and stresses are obtained.
机译:这项工作的目的是开展关于轮轨和轮辊相互作用的研究。最终目标是确定赫兹联系椭圆,最大接触压力和接触区的压力分布,以及车轮中的损伤应力,以便在转向架试验台的设计中应用。为了完成这项任务,已经开发了两种模型:基于赫兹接触理论的分析型,以及使用有限元方法的数值。分析模型通过MATLAB实现。通过这种方式,它是快速且易于测试和分析轮轨,轮辊和轮2滚子相互作用:不同的滚筒半径和两个装载情况:每轮50和100kn。对于数值模型,它已经在Creo参数中设计了在分析模型中测试的相同元素。然后通过Creo模拟的有限元模拟,精制接触区域中的网格来模拟这些组件。接触分析已经在与先前模型相同的条件下进行,并且获得接触区域,压力和应力。

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