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采用电子背散射衍射技术测定50SW1300冷轧无取向硅钢中不同尺寸范围晶粒的含量,利用主成分回归分析法,综合研究不同尺寸范围晶粒的含量对无取向硅钢磁性能的影响.结果表明:通过主成分回归分析法能够从不同尺寸范围晶粒的含量的多个影响因素中获取主要的因素,定量研究它们对无取向硅钢磁性能的影响规律.分析表明,无取向硅钢的铁损与不同尺寸范围晶粒的含量之间存在着可靠的多元线性关系,在一定范围内,较大尺寸晶粒的含量越多,其对铁损优化的作用越明显;而无取向硅钢的磁感与不同尺寸范围晶粒的含量之间并无线性关系.

参考文献

[1] A. Chaudhury;R. Khatirkar;N.N. Viswanathan;V. Singal;A. Ingle;S. Joshi;I. Samajdar .Low silicon non-grain-oriented electrical steel: Linking magnetic properties with metallurgical factors[J].Journal of Magnetism and Magnetic Materials,2007(1):21-28.
[2] Gutiérrez-Casta?eda, E.J.;Salinas-Rodríguez, A. .Effect of annealing prior to cold rolling on magnetic and mechanical properties of low carbon non-oriented electrical steels[J].Journal of Magnetism and Magnetic Materials,2011(20):2524-2530.
[3] Steiner Petrovic, D.;Markoli, B.;Ceh, M. .The nanostructure of non-oriented electrical steel sheets[J].Journal of Magnetism and Magnetic Materials,2010(20):3041-3048.
[4] Paolinelli S C;da Cunha M A .Development of a new generation of high permeability non-oriented silicon steels[J].Journal of Magnetism and Magnetic Materials,2006,304(02):e596-e598.
[5] Nakano M.;Fukunaga H.;Yamashiro Y.;Ishiyama K.;Arai K.I.;Okamoto T. .Ultra-low iron loss in new non-oriented silicon steel sheets[J].Journal of Magnetism and Magnetic Materials,1999(0):341-343.
[6] 张智义,毛卫民,高振宇,陈春梅,李亚东.工艺参数对冷轧无取向硅钢再结晶织构的影响[J].材料热处理学报,2010(06):102-105.
[7] Jian Wang;Jun Li;Xiaochuan Mi .Rapid Annealing Effects on Microstructure, Texture, and Magnetic Properties of Non-Oriented Electrical Steel[J].Metals and Materials International,2012(3):531-537.
[8] Shiozaki M;Kurosaki Y .The effects of grain size on the magnetic properties of nonoriented electrical steel sheets[J].Journal of Materials Engineering,1989,11(01):37-43.
[9] 牛京考.基于主成分回归分析法预测中国铁矿石需求[J].北京科技大学学报,2011(10):1177-1181.
[10] 党耀国;米传民;钱吴永.应用多元统计分析[M].北京:清华大学出版社,2012:99-120.
[11] 何晓群;刘文卿.应用回归分析[M].北京:中国人民大学出版社,2011:69-73.
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