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Stress intensity factor for an infinite plane containing three collinear cracks under compression

机译:压缩下包含三个共线裂纹的无限平面的应力强度因子

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The fracture behaviour of multi-cracked materials has become a key issue in fracture mechanics and has received large attention recently. In this paper, an infinite plane containing three collinear cracks under biaxial compression has been investigated. Considering crack surface friction and using complex stress function theory, the exact analytical solution of stress intensity factors (SIFs) for an infinite plane containing three collinear cracks is obtained. The corresponding finite element code of Abaqus is employed to validate the theoretical results, and its results agree very well with the theoretical results. The effects of confining stresses, crack distances and the crack surface frictions on SIFs are analyzed through the theoretical results and the Abaqus code. A photoelastic experiment was conducted to validate the theoretical result about the effect of confining stresses.
机译:多裂纹材料的断裂行为已成为断裂力学中的关键问题,近来受到了广泛的关注。本文研究了在双轴压缩下包含三个共线裂纹的无限平面。考虑裂纹表面摩擦力并使用复杂应力函数理论,获得了包含三个共线裂纹的无限平面的应力强度因子(SIF)的精确解析解。采用相应的Abaqus有限元代码对理论结果进行了验证,其结果与理论结果吻合得很好。通过理论结果和Abaqus代码分析了约束应力,裂纹距离和裂纹表面摩擦对SIF的影响。进行光弹性实验以验证有关约束应力影响的理论结果。

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