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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Monte Carlo study on abnormal growth of Goss grains in Fe-3%Si steel induced by second-phase particles
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Monte Carlo study on abnormal growth of Goss grains in Fe-3%Si steel induced by second-phase particles

机译:蒙特卡洛法研究第二相粒子引起的Fe-3%Si钢中高斯晶粒的异常生长

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摘要

The selective abnormal growth of Goss grains in magnetic sheets of Fe-3%Si (grade Hi-B) induced by second-phase particles (AlN and MnS) was studied using a modified Monte Carlo Potts model. The starting microstructures for the simulations were generated from electron backscatter diffraction (EBSD) orientation imaging maps of recrystallized samples. In the simulation, second-phase particles were assumed to be randomly distributed in the initial microstructures and the Zener drag effect of particles on Goss grain boundaries was assumed to be selectively invalid because of the unique properties of Goss grain boundaries. The simulation results suggest that normal growth of the matrix grains stagnates because of the pinning effect of particles on their boundaries. During the onset of abnormal grain growth, some Goss grains with concave boundaries in the initial microstructure grow fast abnormally and other Goss grains with convex boundaries shrink and eventually disappear.
机译:使用改进的蒙特卡洛波特模型研究了由第二相颗粒(AlN和MnS)诱导的Fe-3%Si(Hi-B级)磁性薄板中高斯晶粒的选择性异常生长。模拟的起始微观结构是从重结晶样品的电子背散射衍射(EBSD)取向成像图生成的。在模拟中,由于高斯晶界的独特性质,假定第二相粒子随机分布在初始微观结构中,并且假定粒子对高斯晶界的齐纳阻力效应是选择性无效的。模拟结果表明,由于颗粒在其边界上的钉扎效应,基体晶粒的正常生长停滞了。在晶粒异常生长的开始期间,一些在初始微观结构中具有凹边界的戈斯晶粒异常快速地生长,而其他具有凸边界的戈斯晶粒收缩并最终消失。

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