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A new integral equation method for calculating interacting stress intensity factor of multiple crack-hole problem

机译:一种新的整体方程方法,用于计算多裂隙孔问题的交互应力强度因子

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In this paper, a new integral equation method is proposed based on elementary solutions and superposition principle to study multiple crack-hole problem under both remote and surface stresses. Several typical crack-hole problems are solved in order to compare the calculation results of interacting stress intensity factors (SIFs) obtained by the newly proposed method with those obtained by Green's function method, dislocation density method, finite element method and digital photo-elasticity method, and further to investigate the effect of loading conditions and crack-hole geometric parameters on SIFs. Research results show that there exists a neutral inclination angle alpha(0) of the crack (with x-axis) for eliminating the crack-hole interaction when sigma(infinity )(x)>= sigma(infinity)(y). Increase of sigma(infinity)(x) is helpful for cracking arrest and the compressive stresses on crack and hole surfaces are helpful for crack propagation. In addition, the normal stress (p) on the crack surface only affects K-I and alpha(0) of K-I, while the normal stress (n) on the hole surface affects both K-I and alpha(0) of K-I, and K-II and alpha(0) of K-II. The hole radius (R) and the crack-hole spacing distance (t) have little effect on alpha(0) of K-I and K-II. The new integral equation method not only has almost the same calculation results of SIFs as the Green's function, dislocation density and finite element methods, but also has advantage of simplicity and wide applicability over Green's function and dislocation density methods in calculating the interacting SIFs of the cracks under both remote and surface stresses.
机译:本文基于基于基础解决方案和叠加原理,提出了一种新的整体方程方法,以研究遥控和表面应力下的多裂隙孔问题。解决了几个典型的裂缝孔问题,以比较通过绿色功能法,位错密度法,有限元方法和数码照片弹性方法获得的新提出的方法所获得的相互作用应力强度因子(SIFS)的计算结果。 ,并进一步研究了SIFS上的负载条件和裂纹几何参数的影响。研究结果表明,当Sigma(Infinity)(x)> = Sigma(Infinity)(Y)时,存在裂缝(具有X轴)的中性倾斜角α(0)以消除裂缝相互作用。 Sigma(无穷大)(x)的增加有助于破裂停滞,并且裂纹和孔表面上的压缩应力有助于裂纹繁殖。另外,裂纹表面上的正常应力(p)仅影响ki的ki和α(0),而孔表面上的正常应力(n)会影响ki和k-ii的ki和alpha(0)和K-II的alpha(0)。孔半径(R)和裂缝间距距离(T)对K-I和K-II的α(0)几乎没有影响。新的整体式方法不仅具有与绿色函数,位错密度和有限元方法几乎相同的SIF的计算结果,而且还具有在计算互动SIF的相互作用SIF时简单和广泛适用性的简单性和广泛适用性遥远和表面应力下的裂缝。

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