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Modeling of vertical split rim cracking in railroad wheels

机译:车轮垂直裂边裂纹的建模

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摘要

Vertical split rim cracking, due to rapid unstable propagation of a shallow sub-surface crack parallel to the front rim face, is one of the dominant mechanisms of railroad wheel failure. Wheel impact load is believed to be a trigger for this unstable crack growth. This rapid crack growth rate depends on several factors, such as wheel geometry (wheel diameter and rim thickness), load magnitude, load location, residual stresses in the rim, worn tread profile, and material defects in the rim (size, shape, location, and orientation). This paper develops a computational methodology to investigate the effect of these parameters on vertical split rim cracking, using finite element analysis and fracture mechanics. Vertical split rim cracking is modeled using a three-dimensional, multi-resolution, elastic-plastic finite element analysis. Material defects are modeled as mathematically sharp cracks. Wheel impacts are simulated by applying high mechanical loads on the tread surface. The residual stresses and wheel wear effects are also included in modeling vertical split rim cracking. The proposed computational methodology can help to predict whether a vertical split rim failure might be triggered for a given set of parameters, such as load magnitude, load location, wheel diameter, rim thickness, residual stress state, crack size, crack location, and crack orientation.
机译:由于平行于前轮辋面的浅层次表面裂纹的快速不稳定传播,导致垂直分裂轮辋裂纹是车轮故障的主要机制之一。据认为,车轮冲击载荷是这种不稳定裂纹扩展的触发因素。这种快速的裂纹扩展速度取决于几个因素,例如车轮的几何形状(车轮直径和轮辋厚度),载荷大小,载荷位置,轮辋中的残余应力,磨损的胎面轮廓以及轮辋中的材料缺陷(尺寸,形状,位置)和方向)。本文利用有限元分析和断裂力学,开发了一种计算方法来研究这些参数对垂直裂边裂纹的影响。使用三维,多分辨率,弹塑性有限元分析来模拟垂直裂边裂纹。材料缺陷被建模为数学上尖锐的裂纹。通过在胎面表面施加高机械载荷来模拟车轮冲击。残余应力和车轮磨损效应也包括在对垂直裂边裂纹的建模中。所提出的计算方法可以帮助预测是否可能针对给定的一组参数(例如载荷大小,载荷位置,车轮直径,轮辋厚度,残余应力状态,裂纹尺寸,裂纹位置和裂纹)触发垂直裂边故障方向。

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