作者: Y. Hayakawa , J.A. Szpunar
DOI: 10.1016/S1359-6454(97)00111-0
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摘要: A new model of Goss texture development during the secondary recrystallization electrical steel is proposed and tested in this paper. This based on assumption that high-energy boundaries have high grain boundary diffusion coefficients. High coefficients facilitate precipitate coarsening along boundaries, which turn makes them mobile before other boundaries. Recent results obtained by authors show grains are surrounded highest number The these highly allows to grow recrystallization. using a Monte-Carlo simulation growth 3-D polycrystalline computer specimen describes both microtexture crystallographic steel. agree with experiment. Specifically, pinning force incubation time as well orientation recrystallized changes explained.