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Fretting wear and fatigue in press-fitted railway axle: A simulation study of the influence of stress relief groove

机译:压配合铁路轴的微动磨损和疲劳:应力释放槽影响的模拟研究

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摘要

In this paper, a finite element model for the prediction of fretting fatigue crack initiation in the full-scale railway axle was proposed, which took into account the influence of the stress redistribution due to fretting wear on the fretting fatigue. Then, this model was used to investigate the influence of stress relief groove on the fretting wear and fatigue of the railway axle. The simulation results show that the stress concentration at the contact edge is gradually relieved with an increase in fretting cycles due to the fretting wear, while a new stress concentration appears at the edge of fretting wear scar, which gradually increases and moves towards the inner side of the contact area. The stress concentration in the inner side is considered to cause the fatigue crack initiation. Either the increase in groove depth or the decrease in groove radius can reduce the fretting wear and improve the fretting fatigue strength through relieving the stress concentration. Accompanying the improvement of fretting fatigue strength, the potential site of crack initiation gradually moves towards the contact edge. The simulation results stated above agree with the published experimental results.
机译:本文提出了一种预测全尺寸铁路轴微动疲劳裂纹萌生的有限元模型,该模型考虑了微动磨损引起的应力重新分布对微动疲劳的影响。然后,该模型用于研究应力消除槽对铁路轴的微动磨损和疲劳的影响。仿真结果表明,由于微动磨损,接触边缘的应力集中随着微动周期的增加而逐渐减轻,而在微动磨损痕迹的边缘出现了新的应力集中,应力集中逐渐增加并向内侧移动。接触面积。内侧的应力集中被认为引起疲劳裂纹萌生。凹槽深度的增加或凹槽半径的减小都可以减少微动磨损,并通过减轻应力集中来提高微动疲劳强度。随着微动疲劳强度的提高,潜在的裂纹萌生部位逐渐移向接触边缘。上述仿真结果与已发布的实验结果一致。

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