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The mechanics of self-similar and self-affine fractal cracks

机译:自相似和自仿射分形裂纹的力学

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In this paper we study the mechanical attributes of the fractal nature of fracture surfaces. The structure of stress and strain singularity at the tip of a fractal crack, which can be self-similar or self-affine, is studied. The three classical modes of fracture and the fourth mode of fracture are discussed for fractal cracks in two-dimensional and three- dimensional solid bodies. It is discovered that there are six modes of fracture in fractal fracture mechanics. The J-integral is shown to be path-dependent. It is explained that the proposed modified J-integrals in the literature that are argued to be path-independent are only locally path-independent and have no physical meaning. It is conjectured that a fractal J-integral should be the rate of potential energy release per unit of a fractal measure of crack growth. The powers of stress and strain singularities at the tip of a fractal crack in a strain-hardening material are calculated. It is shown that stresses and strains have weaker singularities at the tip of a fractal crack than they do at the tip of a smooth crack.
机译:在本文中,我们研究了断裂表面的分形性质的力学属性。研究了分形裂纹尖端处的应力和应变奇异性的结构,该结构可以是自相似或自仿射的。讨论了二维和三维固体中的分形裂纹的三种经典断裂模式和第四种断裂模式。在分形断裂力学中发现了六种断裂模式。 J积分显示为与路径有关。据解释,在文献中提出的修改的J积分被认为与路径无关,只是局部与路径无关,没有任何物理意义。推测分形J积分应该是裂纹扩展的分形度量单位的势能释放速率。计算应变硬化材料中分形裂纹尖端处的应力和应变奇异度的幂。结果表明,分形裂纹尖端处的应力和应变比平滑裂纹尖端处的奇异性弱。

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