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Elastodynamic image forces on screw dislocations in the presence of phase boundaries

机译:在存在相界的情况下弹性动力学图像力作用在螺钉位错上

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摘要

The elastodynamic image forces acting on straight screw dislocations in the presence of planar phase boundaries are derived. Two separate dislocations are studied: (i) the injected, non-moving screw dislocation and (ii) the injected (or pre-existing), generally non-uniformly moving screw dislocation. The image forces are derived for both the case of a rigid surface and of a planar interface between two homogeneous, isotropic phases. The case of a rigid interface is shown to be solvable employing Head's image dislocation construction. The case of the elastodynamic image force due to an interface is solved by deriving the reflected wave's contribution to the global solution across the interface. This entails obtaining the fundamental solution (Green's function) for a point unit force via Cagniard's method, and then applying the convolution theorem for a screw dislocation modelled as a force distribution. Complete, explicit formulae are provided when available. It is shown that the elastodynamic image forces are generally affected by retardation effects, and that those acting on the moving dislocations display a dynamic magnification that exceed the attraction (or repulsion) predicted in classical elastostatic calculations.
机译:推导了在存在平面相位边界的情况下作用于直螺杆位错的弹性动力。研究了两种不同的位错:(i)注射的,不动的螺钉脱位,以及(ii)注射的(或预先存在的)通常不均匀运动的螺钉脱位。对于刚性表面和两个均质各向同性相之间的平面界面,都需要导出像力。刚性接口的情况显示采用Head的图像错位构造可以解决。通过推导反射波对整个界面的整体解的贡献,可以解决由于界面引起的弹性动力镜像力的情况。这需要通过Cagniard方法获得点单位力的基本解(格林函数),然后将卷积定理应用于建模为力分布的螺钉错位。可用时提供完整的显式公式。结果表明,弹性动力像力通常受延迟效应的影响,作用在运动位错上的弹力表现出的动态放大率超过了经典弹性静力计算中预测的吸引力(或排斥力)。

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