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Effect of Stress Relief Groove Shape on Fretting Fatigue Strength

机译:应力消除槽形状对疲劳强度的影响

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The objective of this study is to evaluate the effect of stress relief groove on fretting fatigue strength. Fretting fatigue tests and finite element analyses were done. The shape of groove was controlled by groove radius R and tangential angle θ. The depth of groove was specified by R and θ. Fretting fatigue strength was increased with an increase of θ and then it turned into a decrease. The decrease was caused by the transition of failure mode from fretting fatigue at the contact part to plain fatigue at the groove root. The transition was caused by an increase of stress concentration at the groove root with an increase of the groove depth. Therefore, the maximum improvement of fatigue strength was achieved by the largest θ limited by fatigue strength of the groove root. In the analysis, the groove generates high compressive stress field at the contact edge, where small cracks never propagate. Therefore, assumptions to relieve the contact pressure concentration at the contact edge were taken into the analysis model. The values of stress intensity factor ranges for small cracks introduced near the contact edge were almost the same between grooved and non-groove specimens.
机译:本研究的目的是评估应力消除槽对疲劳强度的影响。进行疲劳疲劳试验和有限元分析。凹槽的形状由凹槽半径R和切向角θ控制。凹槽深度由R和θ指定。随着θ的增加而增加,疲劳强度增加,然后变成了减少。减少是由故障模式的转变引起的,失效模式从接触部件的疲劳疲劳到沟槽根部的平滑疲劳。转变是由凹槽根部的应力浓度的增加,随着凹槽深度的增加而引起的。因此,通过凹槽根部的疲劳强度的最大θ实现疲劳强度的最大提高。在分析中,凹槽在接触边缘处产生高压缩应力场,其中小裂缝永远不会传播。因此,将在分析模型中取出接触边缘处的接触压力浓度的假设。在接触边缘附近引入的小裂缝的应力强度因子范围的值几乎相同在凹槽和非凹槽样本之间。

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