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Elastic fields of stationary and moving dislocations in finite samples

机译:有限样本中固定和移动位错的弹性场

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摘要

Integral expressions are determined for the elastic displacement and stress fields due to stationary or moving dislocation loops in finite samples. These general expressions are valid for anisotropic media as well. Specifically for the stress fields, a line integral representation is found, thus showing rigorously the independence of the stress fields with respect to the choice of slip planes. In the stationary case the line integral representation involves calculating a 'vector potential' dependent on the specific geometry of the sample. Two examples of geometries, isotropic half-space and thin plate, are shown where the 'vector potential' has been explicitly determined. With this general method, one recovers some earlier specific results in these geometries. [References: 5]
机译:确定由于有限样本中的固定或移动位错环而引起的弹性位移和应力场的积分表达式。这些一般表达式也适用于各向异性介质。特别是对于应力场,找到了线积分表示,从而严格显示了应力场相对于滑移面的选择的独立性。在平稳情况下,线积分表示涉及根据样品的特定几何形状计算“矢量电势”。显示了几何的两个示例,各向同性的半空间和薄板,其中明确确定了“矢量势”。使用这种通用方法,可以在这些几何形状中恢复一些较早的特定结果。 [参考:5]

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