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Simulation of Screw Dislocation Motion in Iron by Molecular Dynamics Simulations

机译:分子动力学模拟模拟铁中螺杆位错运动

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Molecular dynamics (MD) simulations are used to investigate the response of a/2 < 111 > screw dislocation in iron submitted to pure shear strain. The dislocation glides and remains in a (110) plane; the motion occurs exclusively through the nucleation and propagation of double kinks. The critical stress is calculated as a function of the temperature. A new method is developed and used to determine the activation energy of the double kink mechanism from MD simulations. It is shown that the differences between experimental and simulation conditions lead to a significant difference in activation energy. These differences are explained, and the method developed provides the link between MD and mesoscopic simulations.
机译:分子动力学(MD)模拟用于研究铁中纯剪切应变下a / 2 <111>螺丝位错的响应。位错滑动并保持在(110)平面中;运动仅通过双扭结的形核和传播而发生。计算出临界应力与温度的关系。开发了一种新方法,该方法可用于通过MD模拟确定双扭结机制的活化能。结果表明,实验条件和模拟条件之间的差异导致活化能的显着差异。解释了这些差异,并且开发的方法提供了MD和介观模拟之间的联系。

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