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A three-dimensional Monte Carlo model for coarsening kinetics of the bi-continuous system via surface diffusion and its application to nanoporous gold

机译:一种三维蒙特卡罗模型,通过表面扩散及其应用于纳米孔金的双连续系统动力学

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摘要

The coarsening of the two-phase, bi-continuous microstructure via surface diffusion is simulated using a three-dimensional Monte Carlo (MC) model. The coarsening exponent obtained from simulations initially decreases and then saturates at similar to 4 as the temperature increases. Kinetic analysis on nanoporous gold (np-Au) samples, annealed at 450 and 600 degrees C, confirms the prediction of the model. The coarsening probability ratio of np-Au between two annealing temperatures, calculated from the reported activation energy for coarsening of np-Au, is comparable to that of the model, signifying that the simulation successfully mimics the kinetic evolution of the thermally coarsened np-Au via surface diffusion. (C) 2019 Published by Elsevier Ltd on behalf of Acta Materialia Inc.
机译:通过三维蒙特卡罗(MC)模型模拟通过表面扩散的两相粗糙化的双连杆微结构。 从模拟中获得的粗化指数最初降低,然后随着温度的增加,在类似于4的情况下饱和。 纳米多孔金(NP-AU)样品的动力学分析,在450和600℃下退火,证实了模型的预测。 从报道的粗糙度粗化计算NP-Au的激活能量计算的NP-Au之间的粗化概率比与模型的粗化相当,表示模拟成功模拟了热粗糙的NP-Au的动力学演变 通过表面扩散。 (c)2019年由elsevier有限公司发布代表Acta Materialia Inc.

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