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SHATTERED RIM FAILURE MODELING IN RAILROAD WHEELS

机译:铁路轮毂破碎的轮辋故障建模

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Shattered rim cracking, propagation of a sub-surface crack parallel to the tread surface, is one of the dominant railroad wheel failure types observed in North America. This crack initiation and propagation life depends on several factors, such as wheel rim thickness, wheel load, residual stresses in the rim, and the size and location of material defects in the rim. This paper investigates the effect of above mentioned parameters on shattered rim cracking, using finite element analysis and fracture mechanics. This cracking is modeled using a three-dimensional, multi-resolution, elastic-plastic finite element model of a railroad wheel. Material defects are modeled as mathematically sharp cracks. Rolling contact loading is simulated by applying the wheel load on the tread surface over a Hertzian contact area. The equivalent stress intensity factor ranges at the subsurface crack tips are estimated using unimodal stress intensity factors obtained from the finite element analysis and a mixed-mode crack growth model. The residual stress and wheel wear effects are also included in modeling shattered rim cracking.
机译:破碎的轮辋开裂,与胎面表面平行的子表面裂纹的传播是北美观察到的主要铁路轮破坏类型之一。这种裂纹启动和传播寿命取决于若干因素,例如车轮厚度,轮载,轮缘中的残余应力,以及轮辋中材料缺陷的尺寸和位置。本文采用有限元分析和断裂力学研究了上述参数对破碎轮辋开裂的影响。使用铁轮的三维多分辨率,弹性塑料有限元模型建模这种破裂。材料缺陷被建模为数学上尖锐的裂缝。通过在赫兹的接触区域上施加胎面表面上的车轮载荷来模拟滚动接触载荷。使用从有限元分析和混合模式裂纹生长模型获得的单峰应力强度因子来估计地下裂纹提示处的等效应力强度因子范围。残余应力和车轮磨损效果也包括在碎片边缘裂纹的建模中。

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