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Precipitate growth in concentrated binary alloys: A comparison between kinetic Monte Carlo simulations, cluster dynamics and the classical theory

机译:浓缩二元合金中的沉淀生长:动力学蒙特卡洛模拟,团簇动力学和经典理论之间的比较

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摘要

The numerical modelling of concentrated alloy precipitation kinetics remains a challenge at all scales. At the microscopic scale, kinetic Monte Carlo (KMC) simulations can cope with nucleation and early growth whatever the solute concentration may be; it cannot, however, address coarsening. At the mesoscopic scale, the advantage of cluster dynamics (CD) is its ability to describe the whole kinetics of precipitation but lacks of reliability for nucleation in concentrated alloys. Finally, analytical models are preferred at the macroscopic scale for their simplicity, their flexibility and their ability to be incorporated within more general approaches, to predict mechanical properties, for instance. The present work aims at examining the ability of CD and classical analytical models to describe the growth of an isolated precipitate in a concentrated binary alloy, by comparison with KMC simulations taken as the reference.
机译:在所有规模上,浓合金沉淀动力学的数值模型仍然是一个挑战。在微观尺度上,动力学蒙特卡罗(KMC)模拟可以应对成核和早期生长,无论溶质浓度如何。但是,它不能解决粗化问题。在介观尺度上,团簇动力学(CD)的优势在于它能够描述整个析出动力学,但缺乏浓缩合金中成核的可靠性。最后,在宏观尺度上,分析模型是首选,因为它们的简单性,灵活性以及将其纳入更一般的方法中以预测机械性能的能力。通过与作为参考的KMC模拟相比较,本工作旨在检验CD和经典分析模型描述浓缩二元合金中孤立析出物生长的能力。

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