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Model-based simulation of normal grain growth in a two-phase nanostructured system

机译:两相纳米结构体系中正常晶粒生长的基于模型的模拟

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To systematically study normal grain growth in a two-phase volume-conserved system, a modified Potts model is proposed, in which the driving forces for grain boundary migration are the interfacial energy between two phases and the boundary energy inside each phase. Model-based simulation results show that the grain growth kinetics follows a power law with a temperature-independent exponent and that the normalized grain size distribution is lognormal and time invariant. Also, a simple theoretical model is used to predict the potential microstructure in a two-phase system due to the competition between interfacial and grain boundary energies. A critical ratio (~2.6) of the grain boundary energy to the interfacial energy is found for a common two-phase system.
机译:为了系统地研究两相体积守恒体系中的正常晶粒长大,提出了一种改进的Potts模型,该模型中,晶界迁移的驱动力是两相之间的界面能和每一相内部的界面能。基于模型的模拟结果表明,晶粒长大动力学遵循幂律,具有与温度无关的指数,并且归一化的晶粒尺寸分布为对数正态且时间不变。而且,由于界面能和晶界能之间的竞争,使用简单的理论模型来预测两相系统中的潜在微观结构。对于常见的两相系统,发现晶界能与界面能的临界比(〜2.6)。

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