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Disclinations and rotational deformation in fine-grained materials

机译:细粒材料的向错和旋转变形

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摘要

A theoretical model is presented which describes a new mechanism of plastic deformation in fine-grained materials. In the framework of the model, rotational deformation occurs via motion of dipoles of grain-boundary disclinations and is associated with the emission of lattice dislocations from grain boundaries into adjacent grain interiors. Ranges of defect system parameters are identified in which the disclination motion is energetically favourable. It is shown that the mechanism can contribute to plastic flow in fine-grained materials prepared by highly non-equilibrium methods such as ball milling, severe deformation and high-pressure compaction.
机译:提出了一个理论模型,该模型描述了细晶粒材料塑性变形的新机理。在模型的框架中,旋转变形是通过晶界错位的偶极子的运动发生的,并且与晶格位错从晶界到相邻晶粒内部的散发有关。确定缺陷系统参数的范围,其中向错运动在能量上是有利的。结果表明,该机理可以促进通过高度非平衡方法(例如球磨,严重变形和高压压实)制备的细粒材料中的塑性流动。

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