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首页> 外文期刊>Tribology International >Efficient 3d finite element modeling of cyclic elasto-plastic rolling contact
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Efficient 3d finite element modeling of cyclic elasto-plastic rolling contact

机译:循环弹塑性轧件滚动触头高效3D有限元建模

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摘要

Railway rails accumulate large plastic deformations due to cyclic rolling contact loading. The plastic deformations alter the rail geometry, affect material behavior, and cause crack formation and growth. The complex interactions between these phenomena require high fidelity simulations to be understood. 3d finite element simulations are accurate, but their computational cost limits the possible number of simulated cycles. We propose a cyclic finite element simulation in which the wheel and rail remain in contact throughout the simulation. It uses periodic boundary conditions, shadow elements, and model reductions. Compared to previous work, it is 25 times faster. The method is available as an open-source plugin to Abaqus, enabling other researchers to study rolling contact loading coupled with large plastic deformations.
机译:由于周期性滚动接触载荷,铁路钢轨积累了较大的塑性变形。塑性变形会改变钢轨几何形状,影响材料性能,并导致裂纹形成和扩展。这些现象之间的复杂相互作用需要高保真模拟才能理解。三维有限元模拟是精确的,但它们的计算成本限制了可能的模拟周期数。我们提出了一种循环有限元模拟,其中车轮和钢轨在整个模拟过程中保持接触。它使用周期性边界条件、阴影元素和模型简化。与以前的工作相比,它快了25倍。该方法作为Abaqus的开源插件提供,使其他研究人员能够研究滚动接触载荷与大塑性变形的耦合。

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