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The discrete-continuum connection in dislocation dynamics: I. Time coarse graining of cross slip

机译:位错动力学中的离散连续体连接:I.滑移的时间粗纹

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摘要

A recent continuum dislocation dynamics formalism (Xia and El-Azab 2015 Model. Simul. Mater. Sci. Eng. 23 055009) has been enriched by incorporating an improved cross slip model. 3D discrete dislocation dynamics simulations were used to collect cross slip rate data in the form of time series that were analysed to estimate the correlation time for cross slip, which was subsequently used as a time scale for local window averaging of the collected cross slip rate data. This time averaging filters out the cross slip rate fluctuations over time intervals less than the correlation time, thus resulting in relatively smoother time series for the cross slip rates. The coarse grained series were further cast in the form of smooth trends with superposed fluctuations and implemented in continuum dislocation dynamics simulations using a Monte Carlo scheme. This approach resulted in a significant improvement of the predicted stress-strain response and a more realistic dislocation cell structure evolution. The similitude law for the average cell size evolution with inverse of stress, however, remains unaffected by the cross slip rates used in continuum dislocation dynamics.
机译:最近的连续位错动力学形式主义(Xia and El-Azab 2015 Model。Simul。Mater。Sci。Eng。23 055009)通过合并改进的交叉滑动模型得到了丰富。使用3D离散位错动力学模拟以时间序列的形式收集交叉滑移率数据,对其进行分析以估计交叉滑移的相关时间,随后将其用作对所收集的交叉滑移率数据进行本地窗口平均的时间标。该时间平均滤除了小于相关时间的时间间隔内的滑移率波动,因此导致了相对平滑的滑移率时间序列。粗粒级数进一步以具有叠加波动的平滑趋势的形式铸造,并使用蒙特卡洛方案在连续位错动力学模拟中实施。这种方法导致预期的应力应变响应的显着改善和更实际的位错细胞结构演变。但是,平均细胞大小演变与应力成反比的相似定律不受连续位错动力学中使用的交叉滑动速率的影响。

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