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Influence of the Dislocation Density on the Expansion Dynamics of the Crystallographic Slip Zone along Screw Orientations in Aluminum and Copper

机译:脱位密度对铝和铜螺杆取向晶体滑动区膨胀动力学的影响

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Crystallographic slip is one of key mechanisms determining plastic form change of crystalline solids. Despite a large amount of works done on the subject, crystallographic slip is a very difficult subject to study. Significant progress in the study of the crystallographic slip process is possible only with the use of a set of different methods: experimental methods, methods of mathematical modeling and simulation. The paper presents a modification mathematical expansion model of closed dislocations emitted by one dislocation source with takes into account the elastic interaction force among all dislocations of the forming dislocation pile-up. The model takes into account the Peach-Koehler forces, lattice, impurity, and dislocation friction, linear tension, viscous deceleration, and the intensity of generation of point defects beyond jogs on the dislocation, as well as the elastic interaction force among all dislocations of the forming dislocation pile-up. The analysis of the study results on the expansion dynamics of the dislocation loop along the screw orientation on copper and aluminum with varying of the dislocation density from 3-10~(11) m~(-2) to 1012 m~(-2) is carried out. It is established that the length and the path time of the screw dislocation, as well as the number of dislocations emitted by the dislocation source, essentially depend on the density of dislocations. The dependence of the current radius, velocity, and kinetic energy of the screw dislocation on the path time and the dependence of the current velocity and the kinetic energy of the first screw dislocation emitted by the dislocation source on its current radius are described.
机译:晶体滑动是确定结晶固体塑性形态变化的关键机制之一。尽管对该主题进行了大量的作品,但晶体滑动是一个非常困难的研究。只有使用一组不同的方法,可以仅通过使用一组不同方法来研究晶体滑移过程的显着进展:实验方法,数学建模和模拟方法。本文介绍了一个位错源发射的闭口脱位的修改数学膨胀模型,考虑了形成位错堆积的所有脱位中的弹性相互作用力。该模型考虑了Peach-Koehler力,晶格,杂质和位错摩擦,线性张力,粘性减速,以及在脱位上的慢跑中的点缺陷的产生的强度,以及所有脱位之间的弹性相互作用力形成脱位堆积。对研究的分析结果对铜和铝上的螺杆取向沿螺旋定向的膨胀动力学,从3-10〜(11)m〜(-2)到1012 m〜(-2)不同的位错密度完成了。建立螺杆位错的长度和路径时间,以及由位错源发出的位错数基本上取决于位错的密度。描述了螺杆位错的电流半径,速度和动能对电流半径发射的第一螺钉位错的依赖性的依赖性和电流速度的依赖性和依赖性的依赖性。

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