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Fatigue analysis of railway wheel using a multiaxial strain-based critical-plane index

机译:基于多轴应变的临界面指数的铁路车轮疲劳分析

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A fatigue damage model to assess the development of subsurface fatigue cracks in railway wheels is presented in this paper. A 3-dimensional finite element model (FEM) is constructed to simulate repeated cycles of contact loading between a railway wheel and a rail. The computational approach includes a hard-contact over-closure relationship and an elastoplastic material model with isotropic and kinematic hardening. Results from the simulation are used in a multiaxial critical-plane fatigue damage analysis. The employed strain-based critical-plane fatigue damage approach is based on Fatemi-Socie fatigue index that takes into account the non-proportional and out-of-phase nature of the multiaxial state of stress occurs when a railway wheel rolls on a rail. It predicts fatigue-induced micro-crack nucleation at a depth of about 3.7 mm beneath the wheel tread, as well as the crack plane growth orientation which indicates the possible failure pattern. Additionally, the influence of various factors such as contribution of normal stresses, higher wheel load, and material model have been investigated.
机译:本文提出了一种疲劳损伤模型,用于评估铁路车轮表面疲劳裂纹的发展。构建了三维有限元模型(FEM),以模拟铁路车轮和轨道之间接触载荷的重复循环。该计算方法包括硬接触过度闭合关系和具有各向同性和运动学硬化的弹塑性材料模型。模拟的结果用于多轴临界平面疲劳损伤分析。所采用的基于应变的临界面疲劳损伤方法基于Fatemi-Socie疲劳指数,该疲劳指数考虑了当铁路车轮在轨道上滚动时出现的多轴应力状态的非比例和异相特性。它预测了在轮胎胎面下方约3.7 mm的深度处疲劳引起的微裂纹成核,以及裂纹平面的生长方向,表明可能的破坏模式。此外,还研究了各种因素的影响,例如正应力的贡献,更高的车轮载荷和材料模型。

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