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3D finite element investigation on the plastic flows of rolling contacts-correlation with railhead microstructural observations

机译:滚动接触塑性流动的3D有限元研究-与轨道头微结构观察的相关性

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摘要

In this work, a three-dimensional elasto-plastic finite element model is used to simulate the rail mechanical response to the action of a rolling wheel. Plastic flows in the near-surface layer are computed as a function of the traction coefficient. The depth and the distortion of the plastically deformed layer are analysed versus this traction coefficient and correlated qualitatively to the microstructural observations of plastic flows in real railheads and existing theoretical studies. The deviations of the numerical results with reality are discussed in terms of the presence of a solid, third body layer, neglected in the simulations.
机译:在这项工作中,使用三维弹塑性有限元模型来模拟轨道机械对滚轮作用的响应。根据牵引系数计算近表面层中的塑性流动。分析了塑性变形层的深度和变形与该牵引系数的关系,并与真实轨头中塑性流动的微观结构观察和现有理论研究进行了定性关联。数值结果与实际的偏差将根据在模拟中忽略的固体第三体层的存在进行讨论。

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