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首页> 外文期刊>International Journal of Fracture >Dislocation tri-material solution in the analysis of bridged crack in anisotropic bimaterial half-space
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Dislocation tri-material solution in the analysis of bridged crack in anisotropic bimaterial half-space

机译:各向异性双材料半空间桥梁裂纹分析中的位错三材料解

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摘要

The problem of an edge-bridged crack terminating perpendicular to a bimaterial interface in a half-space is analyzed for a general case of elastic anisotropic bimaterials and specialized for the case of orthotropic bimaterials. The edge crack lies in the surface layer of thickness h bonded to semi-infinite substrate. It is assumed that long fibres bridge the crack. Bridging model follows from the assumption of "large" slip lengths adjacent to the crack faces and neglect of initial stresses. The crack is modelled by means of continuous distribution of dislocations, which is assumed to be singular at the crack tip. With respect to the bridged crack problems in finite dissimilar bodies, the reciprocal theorem ( PSI -integral) is demonstrated as to compute, in the present context, the generalized stress intensity factor through the remote stress and displacement field for a particular specimen geometry and boundary conditions using FEM. Also the application of the configurational force mechanics is discussed within the context of the investigated problem.
机译:对于弹性各向异性双材料的一般情况,专门研究了正交各向异性双材料的情况,分析了在半空间中垂直于双材料界面的边缘桥接裂纹终止的问题。边缘裂纹位于与半无限基体结合的厚度为h的表面层中。假定长纤维弥合了裂纹。桥接模型是基于以下假设:靠近裂纹面的“大”滑移长度和忽略初始应力。裂纹是通过连续分布的位错来建模的,假定位错在裂纹尖端处是奇异的。关于有限异种体中的桥梁裂纹问题,证明了互逆定理(PSI-积分)在当前情况下可以通过远程应力和位移场计算特定试样几何形状和边界的广义应力强度因子使用FEM的条件。同样,在所研究的问题的范围内讨论了构造力力学的应用。

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