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首页> 外文期刊>International Journal of Damage Mechanics >A screw dislocation near a damaged arbitrary inhomogeneity-matrix interface
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A screw dislocation near a damaged arbitrary inhomogeneity-matrix interface

机译:靠近A损坏的任意惰性矩阵界面附近的螺钉位错

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摘要

In the literature, the analytical solutions concerned with the interaction between screw dislocation and surfaces/interfaces have been mainly limited to simple geometries and perfect interfaces. The focus of the current work is to provide an approach based on a rigorous semi-analytical theory suitable for treatment of such surfaces/interfaces that concurrently have complex geometry and imperfect bonding. The proposed approach captures the singularity of the elastic fields exactly. A vast variety of the pertinent interaction problems such as dislocation near a multi-inhomogeneity with arbitrary geometry bonded imperfectly to a matrix, dislocation near the free boundaries of a finite elastic medium of arbitrary geometry, and so on is considered. In the present approach the out-of-plane component of the displacement in each domain is decomposed as the displacement corresponding to a screw dislocation in a homogeneous elastic body of infinite extent and the disturbance displacement due to the interaction. Subsequently, the disturbance displacement in each medium is expressed in terms of eigenfunction expansion. Damaged interfaces are modeled by a spring layer of vanishing thickness, and the amount of damage is controlled via the stiffness of the spring. For the illustration of the robustness of the proposed methodology a variety of examples including the interaction of a screw dislocation with a circular as well as a star-shaped inhomogeneities, two interacting inhomogeneities, imperfectly bonded to an unbounded medium are given. Also, examples for highlighting the effect of free surfaces in the case of finite domains are provided. It is revealed that in the cases where matrix is stiffer than the inhomogeneity and the dislocation is inside the inhomogeneity, or the other way around, then the amount of interface damage can change the sign of the image force.
机译:在文献中,与螺杆位错和表面/接口之间相互作用的分析解决方案主要限于简单的几何形状和完美的接口。目前工作的焦点是提供一种基于严格的半分析理论的方法,适用于处理同时具有复杂几何形状和不完全粘合的这种表面/接口的处理。所提出的方法恰好捕获弹性场的奇点。各种相关的相互作用问题,例如脱位近在几何形状附近的脱位,禁止地粘合到矩阵,靠近任意几何形状的有限弹性介质的自由边界附近,等等。在本方法中,每个结构域中的位移的平面间分量被分解为对应于均匀弹性体中的螺杆位错,其在无限程度的均匀弹性体和由于相互作用引起的扰动位移。随后,以特征函数膨胀表示每个介质中的扰动位移。损坏的接口是由消失厚度的弹簧层建模的,并且通过弹簧的刚度来控制损坏的量。为了说明所提出的方法的鲁棒性,给出了包括螺钉脱位与圆形以及星形不均匀的相互作用的各种实例,给出了两个相互作用的不完全键合到未绑定的介质。而且,提供了用于突出自由表面在有限域的情况下的实施例的实例。据透露,在矩阵比不均匀性更硬的情况下,位于不均匀性的位置,或者其他方式,那么界面损坏的量可以改变图像力的符号。

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