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3D discrete dislocation models of thin-film plasticity

机译:薄膜可塑性的3D离散位错模型

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Three-dimensional simulation schemes for discrete dislocation dynamics (DDD) have been used successfully to investigate plasticity of bulk materials. The adaptation of these DDD schemes to a description of thin-film plasticity requires detailed modeling of the interfaces and surfaces of the film. One possible method is to compensate for the normal stresses that a dislocation distribution exerts on a surface by appropriate point loads. This traction-compensation method is extended to a free standing film (two opposing surfaces). The extension to a thin film on a substrate is possible.
机译:用于离散位错动态(DDD)的三维仿真方案已成功地研究了散装材料的可塑性。这些DDD方案对薄膜可塑性描述的改编需要详细的膜的界面和表面的造型。一种可能的方法是通过适当的点载荷来补偿位错分布在表面上施加的正常应力。该牵引补偿方法延伸到自由撑膜(两个相对的表面)。衬底上的薄膜的延伸是可能的。

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