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Size effect investigation of a central interface crack between two bonded dissimilar materials

机译:两种粘结异种材料之间中心界面裂纹的尺寸效应研究

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This paper focuses on the fracture process connected with a finite central crack along the plane interface between two bonded dissimilar materials under biaxial loading. The analytical solution, based upon the complex potential technique, stems from the boundary value problem formulated for the interfacial crack model subjected to biaxial loading at infinity. Numerical solutions of the interfacial crack problem, based on a Finite Element Method (FEM) formulation, are worked out with reference to external loadings applied at the boundary of a bonded finite plate with the same interfacial crack. Models of different material properties, interface crack lengths, biaxial loading conditions and interfacial fracture strengths are investigated. The analytical and numerical results of this study are examined to see how they are similar and how they are different, when the ratio of the dimension of the bonded finite plate I to the interfacial crack length 2a is varied. A local fracture criterion, for the damaged composite elastic system, involves a suitable defined radial distance from the crack tip, as well as singular and non-singular stress terms. The crack extension at the interface, or its deviation into one of the two dissimilar media, are graphically shown and discussed.
机译:本文重点研究在双轴载荷下沿两种粘结异种材料之间的平面界面与有限的中心裂纹有关的断裂过程。基于复杂势能技术的解析解源于为无限大双轴加载下的界面裂纹模型制定的边值问题。基于有限元方法(FEM)公式,对界面裂纹问题进行了数值求解,并参考了施加于具有相同界面裂纹的有限板边界上的外部载荷。研究了不同材料特性,界面裂纹长度,双轴载荷条件和界面断裂强度的模型。当粘结有限板I的尺寸与界面裂纹长度2a的比率发生变化时,将检查该研究的分析和数值结果,以查看它们的相似之处和不同之处。对于损坏的复合弹性系统,局部断裂准则涉及到距裂纹尖端的适当定义的径向距离,以及奇异和非奇异应力项。以图形方式显示和讨论了界面处的裂纹扩展,或它向两种不同介质之一的偏移。

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