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Monte Carlo study on abnormal growth of Goss grains in Fe-3%Si steel induced by second-phase particles
Authors:Dong-qun Xin  Cheng-xu He  Xue-hai Gong  Hao Wang  Li Meng  Guang Ma  Peng-fei Hou  Wen-kang Zhang
Institution:1. School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China;2. Global Energy Interconnection Research Institute, Beijing 102211, China;3. Beijing R&D Center, East China Branch of Central Iron and Steel Research Institute, Beijing 100081, China;4. Department of Electrical Engineering New Materials, Global Energy Interconnection Research Institute, Beijing 102211, China;5. Technical Center, Taiyuan Iron and Steel Group Co., Ltd., Taiyuan 030003, China
Abstract: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 as-sumed 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.
Keywords:silicon steel  grain growth  second phase particles  Monte Carlo simulation
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