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简述了无取向电工钢常见增强{100}织构,进而改善磁性能的方法.以现有工业生产流程为背景,综述了强化不同类型无取向电工钢{100}织构的新型思路,包括利用高牌号无取向电工钢铸态{100}织构的遗传特性、利用弹性各向异性促进低牌号无取向电工钢中奥氏体相变生成{100}织构、脱碳控制中牌号无取向电工钢奥氏体相变、剪切带变形促进高硅钢{100}织构形成等原理.结果显示,这些技术原理的应用均可使相应无取向电工钢成品板的织构结构发生根本性改变,且磁性能得到大幅度提高.

参考文献

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[4] Li Xie;Ping Yang;Ning Zhang;Cui Zong;Dongsheng Xia;Weimin Mao.Formation of {1 0 0} textured columnar grain structure in a non-oriented electrical steel by phase transformation[J].Journal of Magnetism and Magnetic Materials,2014:1-4.
[5] Xie, Li;Yang, Ping;Zhang, Ning;Mao, Weimin.Texture Optimization for Intermediate Si-Containing Non-oriented Electrical Steel[J].Journal of Materials Engineering and Performance,201411(11):3849-3858.
[6] 赵亚慧;朱国辉;王立涛;高海建.退火温度对CSP生产薄规格无取向电工钢性能的影响[J].金属功能材料,2012(2):18-22.
[7] 秦镜;杨平;毛卫民;叶丰.轧制法制备低铁损高磁感6.4%(质量分数)硅钢及其织构演变[J].功能材料,2014(10):10133-10137.
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