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Thermomechanical analysis of the wheel-rail contact using a coupled modelling procedure

机译:使用耦合建模程序的轮轨接触的热机械分析

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This research presents a coupled thermomechanical modelling procedure for the wheel-rail contact problem and computes the flash-temperature and stress-strain responses when thermal effects are present. A three-dimensional elasto-plastic finite element model was built considering the wheel-track interaction. When the wheel is running on rail, frictional energy is generated and converted into heat. To evaluate the contribution of thermal effects and plasticity, five different material models were studied among them TEPS was nonlinear and temperature dependent including thermal softening. Discussions were made on the effect of solution type and material type. The rail temperature, calculated for a critical creepage case, confirmed the potential of martensitic phase transformation. Thermal effects were also important at lower creepages, where a synchronization effect causes earlier damage.
机译:该研究介绍了车轮轨道接触问题的耦合热机械建模程序,并且在存在热效应时计算闪光温和应力应变响应。 建立了一个三维弹塑性有限元模型,考虑了轮轨相互作用。 当车轮在轨道上运行时,产生摩擦能量并转换成热量。 为了评估热效应和可塑性的贡献,研究了五种不同的材料模型,TEPS是非线性和温度依赖性的,包括热软化。 求解溶液类型和材料类型的讨论。 用于临界爬电壳的轨道温度证实了马氏体相变的潜力。 热效应在较低的爬电端来也很重要,其中同步效果导致较早的损坏。

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