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Monte-Carlo Simulation of Isotropic and Anisotropic Grain Growth in Liquid Phase Sintered Ceramics

机译:液相烧结陶瓷各向同性和各向异性晶粒生长的Monte-Carlo模拟

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The Potts -^sMonte-Carlo Method was used to study the isotropic and anisotropic grain growth and coarsening process in liquid phase sintered ceramic materials. The program was made ourselves and so it’s convenient to modify duly. A fully wetting system was assumed and the interpretation of the simulation results will be described and discussed. A two dimensional, hexagonal lattice is developed to digitize the microstructure; the components and the grain orientation are distributed randomly. The periodical boundary condition is applied. The effects of liquid phase fraction raging from 0 to 0.20 and the isotropic and anisotropic growth mechanism were investigated. It’s found that the isotropic grain growth mechanism is consistent to Ostwald ripening theory, the anisotropic factor results in significant influence on the grain morphology and the liquid fraction also affects the grain morphology, which were consistent with theoretical analysis and experimental investigation from others.
机译:Potts - ^ Smonte-Carlo方法用于研究液相烧结陶瓷材料中各向同性和各向异性晶粒生长和粗化过程。该计划是我们自己,因此可以方便地修改了。假设和讨论并讨论模拟结果的解释,并讨论完全润湿系统。开发了二维六边形格子以将微观结构进行数字化;组件和晶粒取向随机分布。施加周期性边界条件。研究了液相级分的影响0至0.20和各向同性和各向异性生长机制。结果发现各向同性晶粒生长机制与OSTWALD成熟理论一致,各向异性因素导致对晶粒形态的显着影响,液体级分也影响晶粒形态,这与其他人的理论分析和实验调查一致。

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