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The fourth mode of fracture in fractal fracture mechanics

机译:分形断裂力学中的第四种断裂模式

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This paper offers a systematic approach for obtaining the order of stress singularity for different self-similar and self-affine fractal cracks. Mode II and Mode III fractal cracks are studied and are shown to introduce the same order of stress singularity as Mode I fractal cracks do. In addition to these three classical modes, a Mode IV is discovered, which is a consequence of the fractal fracture. It is shown that, for this mode, stress has a weaker singularity than it does in the classical modes of fracture when self-affine fractal cracks are considered, and stress has the same order of singularity when self-similar cracks are considered. Considering this new mode of fracture, some single-mode problems of classical fracture mechanics could be mixed-mode problems in fractal fracture mechanics. By imposing a continuous transition from fractal to classical stress and displacement fields, the complete forms of the stress and displacement fields around the tip of a fractal crack are found. Then a universal relationship between fractal and classical stress intensity factors is derived. It is demonstrated that for a Mode IV fractal crack, only one of the stress components is singular; the other stress components are identically zero. Finally, stress singularity for three-dimensional bodies with self-affine fractal cracks is studied. As in the two-dimensional case, the fourth mode of fracture introduces a weaker stress singularity for self-affine fractal cracks than classical modes of fracture do.
机译:本文提供了一种系统的方法来获得不同的自相似和自仿射分形裂纹的应力奇异性顺序。对模式II和模式III的分形裂纹进行了研究,结果表明它们引入的应力奇异性与模式I的分形裂纹相同。除了这三种经典模式外,还发现了模式IV,这是分形断裂的结果。结果表明,对于这种模式,当考虑自仿形分形裂纹时,应力具有比传统断裂模式弱的奇异性;而考虑到自相似裂纹时,应力具有相同阶的奇异性。考虑到这种新的断裂模式,经典断裂力学中的一些单模问题可能是分形断裂力学中的混合模问题。通过施加从分形到经典应力和位移场的连续过渡,发现了分形裂纹尖端周围应力和位移场的完整形式。然后推导了分形应力强度因子与经典应力强度因子之间的通用关系。结果表明,对于IV型分形裂纹,只有一个应力分量是奇异的。其他应力分量相同地为零。最后,研究了具有自仿形分形裂纹的三维物体的应力奇异性。与在二维情况下一样,第四种断裂模式对自仿射分形裂纹的应力奇异性比传统断裂模式要弱。

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