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Stress intensity factor equations for mixed-mode surface and corner cracks in finite-thickness plates subjected to tension loads

机译:受拉载荷作用下有限厚板混合模式表面和拐角裂纹的应力强度因子方程

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摘要

Normalized mixed-mode stress intensity factor equations are presented for deflected and inclined circular surface and corner cracks in finite-thickness plates under uniform remote tensile loading. The equations are obtained by performing non-linear regression analyses on the data from previous numerical solutions based on three-dimensional enriched finite elements. In the equations, the effects of deflection/inclination angles and plate thickness on mixed-mode stress intensity factors are included. The comparisons of normalized stress intensity factors from the equations with those of the finite element analyses show good agreement. Thus, it is concluded that, as a reasonable approximation, the presented equations can be used to assess stress intensity factors and fracture conditions of mixed-mode circular surface and corner cracks in finite-thickness plates.
机译:给出了在均匀的远程拉伸载荷作用下有限厚度板中弯曲和倾斜的圆形表面和拐角裂纹的归一化混合模式应力强度因子方程。通过对基于三维富集有限元的先前数值解中的数据进行非线性回归分析,可以获得方程式。在这些方程式中,包括挠曲/倾斜角和板厚对混合模式应力强度因子的影响。方程中的归一化应力强度因子与有限元分析的比较显示出很好的一致性。因此,可以得出结论,作为合理的近似,所提出的方程式可用于评估有限厚度板中混合模式的圆形表面和拐角裂纹的应力强度因子和断裂条件。

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