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Effects of Shot Peening on Fretting Fatigue Crack Initiation Behavior

机译:喷丸处理对微动疲劳裂纹萌生行为的影响

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摘要

This study analyzes the effects of shot peening on the crack initiation behavior under fretting loading by using a numerical method. The residual stress relaxation and the contact stress evolution are both considered. The crack initiation life is predicted by the critical plane Smith–Watson–Topper (SWT) model. Considering that the fretting contact region has a high stress gradient along the depth direction, the process volume approach is adopted to calculate the SWT parameters. The results show that the remaining residual stress after relaxation strongly affects crack initiation life. The remaining residual stress decreases with the increase of fatigue loading, and the effect of shot peening on the improvement of crack initiation life is more obvious under smaller fatigue loading. Furthermore, under smaller fatigue loading, the crack initiation life of specimens with high shot peening intensity is longer than that of specimens with low shot peening intensity. However, the opposite phenomenon appears when the fatigue loading is large enough.
机译:本研究采用数值方法分析了喷丸处理对微动载荷作用下裂纹萌生行为的影响。都考虑了残余应力松弛和接触应力的演变。裂纹萌生寿命由临界平面Smith-Watson-Topper(SWT)模型预测。考虑到微动接触区域沿深度方向应力梯度较大,采用工艺量法计算SWT参数。结果表明,松弛后剩余的残余应力强烈影响裂纹的萌生寿命。残余残余应力随着疲劳载荷的增加而减小,而喷丸处理在较小疲劳载荷下对改善裂纹萌生寿命的作用更加明显。此外,在较小的疲劳载荷下,高喷丸强度的试样的裂纹萌生寿命比低喷丸强度的试样的裂纹萌生寿命更长。但是,当疲劳载荷足够大时,就会出现相反的现象。

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