Recrystallization texture development in rare-earth (RE)-doped non-oriented silicon steel

被引:0
|
作者
Zheng-hua He
Yu-hui Sha
Yong-kuang Gao
Song-tao Chang
Fang Zhang
Liang Zuo
机构
[1] Northeastern University,Key Laboratory for Anisotropy and Texture of Materials (Ministry of Education)
来源
Journal of Iron and Steel Research International | 2020年 / 27卷
关键词
Non-oriented silicon steel; Texture; Rare-earth element; Grain boundary; Segregation;
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中图分类号
学科分类号
摘要
High-grade non-oriented silicon steel with higher permeability and lower core loss has become the pursed target with the rapid development of electrical machines. The effects of rare-earth (RE) element on recrystallization texture in RE-doped Fe-3.1 wt.% Si-1.2 wt.% Al non-oriented silicon steel were investigated by macro- and micro-texture analyses. Nonlinear variation of recrystallization texture with RE element content was observed. In the competition among main recrystallization texture components, favorable {113} <361> and λ fiber (<001>//ND) are strengthened and unfavorable γ fiber is evidently decreased by the addition of RE element, whereas the effect of RE element is reversed by excess RE element. The recrystallization texture development is determined by RE-affected nucleation and grain growth in terms of grain boundary migration related to segregation and inclusion. The properly inhibited grain boundary mobility can promote favorable recrystallization texture by the improved nucleation and efficient grain growth.
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页码:1339 / 1346
页数:7
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