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A novel approach to predict fretting fatigue crack initiation

机译:一种预测微动疲劳裂纹萌生的新方法

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This paper proposes a simplified approximation of the velocity fields close to the contact edge using non-local intensity factors and reference fields. This non-local description is not affected by size or gradient effects and leads to unique crack initiation boundaries. Linear intensity factor I represents the contribution of the elastic field on the total one and can be determined thanks to the macroscopic load even with coarse mesh. While the complementary intensity factor I~(c) describes the friction effect and is proportional to the size of the partial slip zone. The prediction of I~(c) using I through an incremental approach allows to predict the velocity fields for complex loadings and can be used to set up criteria to predict crack initiation.
机译:本文提出了使用非局部强度因子和参考场对靠近接触边缘的速度场进行简化的近似方法。这种非局部描述不受尺寸或梯度效应的影响,并导致独特的裂纹萌生边界。线性强度因子I表示弹性场对全部弹性场的贡献,即使在粗网格的情况下,由于宏观载荷也可以确定。而互补强度因子I〜(c)描述了摩擦效果,并且与部分滑动区域的大小成比例。通过增量方法使用I对I〜(c)进行预测,可以预测复杂载荷下的速度场,并可用于建立预测裂纹萌生的标准。

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