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On the interaction between a dislocation and a circular inhomogeneity with imperfect interface in antiplane shear

机译:反平面剪切中位错与界面不完善的圆形不均匀性之间的相互作用

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The solution of appropriate elasticity problems involving the interaction between inclusions and dislocations plays a fundamental role in many practical and theoretical applications, namely, it increases the understanding of material defects thereby providing valuable insight into the mechanical behavior of composite materials. Although the problem of a three-phase circular inclusion interacting with a dislocation in antiplane shear has been presented [Xiao and Chen. Mech. Mater. 32 (200) 485], the analysis is limited to the classical perfect bonding condition. The current paper considers the solution for a homogeneous circular inclusion interacting with a dislocation under thermal loadings in antiplane shear. The bonding along the inhomogeneity-matrix interface is considered to be imperfect with the assumption That the interface imperfections are constant. It is found that when the inhomogeneity is soft, regardless of the level of interface imperfection, the inhomogeneity will always attract the dislocation. As a result, no equilibrium positions are available. Alternatively, when the inhomogeneity is hard, an unstable equilibrium position is found which depends on the imperfect interface condition and the shear moduli ratio mu(2)/mu(1). (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 12]
机译:涉及夹杂物和位错之间相互作用的适当弹性问题的解决方案在许多实际和理论应用中都起着基本作用,即,它增加了对材料缺陷的理解,从而提供了对复合材料力学性能的宝贵见解。尽管已经提出了三相圆形夹杂物与反平面剪切中的位错相互作用的问题[Xiao and Chen。机甲母校32(200)485],分析仅限于经典的完美结合条件。本文考虑了在反平面剪切作用下热载荷作用下位错相互作用的均质圆形夹杂物的解决方案。假设界面缺陷是恒定的,则沿非均匀性-矩阵界面的结合被认为是不完美的。发现当不均匀性是软的时,不管界面缺陷的程度如何,不均匀性将总是引起位错。结果,没有平衡位置可用。可替代地,当不均匀性很硬时,发现不稳定的平衡位置,这取决于不完善的界面条件和剪切模量比mu(2)/ mu(1)。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:12]

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