Evaluation of grain growth exponent by Monte Carlo simulation in polycrystalline materials

IF 1.4 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
P. Rajendra, K. Phaneesh, C. Ramesha, Madeva Nagaral, V. Auradi
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引用次数: 0

Abstract

In metallurgy, the microstructure study is very important to evaluate the properties and performances of a material. The Monte Carlo method is applied in so many fields of Engineering Science and it is a very effective method to examine the topology of the computer-simulated structures and exactly resembles the static behavior of the atoms. The effective 2D simulation was performed to understand the grain growth kinetics, under the influence of second phase particles (impurities) is a base to control the microstructure. The matrix size and [Formula: see text]-states are optimized. The grain growth exponent was investigated in a polycrystalline material using the [Formula: see text]-state Potts model under the Monte Carlo simulation. The effect of particles present within the belly of grains and pinning on the grain boundaries are observed. The mean grain size under second phase particles obeys the square root dependency.
用蒙特卡罗模拟评价多晶材料的晶粒生长指数
在冶金学中,微观组织的研究是评价材料性能的重要手段。蒙特卡罗方法应用于工程科学的许多领域,它是一种非常有效的方法来检查计算机模拟结构的拓扑结构,并完全类似于原子的静态行为。通过有效的二维模拟来了解晶粒生长动力学,第二相颗粒(杂质)的影响是控制微观结构的基础。优化了矩阵大小和[公式:见文本]状态。在蒙特卡罗模拟下,采用[公式:见文]-状态波茨模型研究了多晶材料的晶粒生长指数。观察了存在于晶粒腹部的颗粒和钉住对晶界的影响。第二相粒子的平均晶粒尺寸服从平方根关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.10
自引率
15.40%
发文量
27
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