作为一种具有优异高频铁磁性能的合金,Fe-6.5%Si(质量分数)高硅钢在高频工况条件下降损效果明显,对电气行业应用器件高频化、小型化、节能等具有十分重要的意义.通过与取向硅钢测量B-P数据对比,验证了高硅钢高频超低损特性,且轧制高硅钢与日本CVD法生产高硅钢存在基本相同的铁损值.采用国标Epstein Square 法对0.30 mm高硅钢薄板进行单片测试,并对由0.30 mm高硅钢薄板首次装配成的电感器进行铁损测试,对比测试结果表明,元件测试与单片测试数据基本吻合,高磁感应强度条件下,元件测试结果略低于单片测试,分析原因为:线圈引起励磁压降;元件叠片间出现短路,电流增大,损耗增加;气隙板厚度过大.
参考文献
[1] | Paolinelli S C et al.Development of a new generation of highpermeability non-oriented silicon steels[J].Journal of Magnetism and Magnetic Materials,2006,304:596. |
[2] | Raviprasad K et al.The influence and critical points and structure and micro structural evolution in iron rich Fe-Si alloys[J].Acta Matall Mater,1993,41:609. |
[3] | Haiji H J et al.Magnetic properties and workability of 6.5%Si steel sheet[J].Journal of Magnetism and Magnetic Materials,1996,160:109. |
[4] | Phway T P P et al.Magnetostriction trend of non-oriented 6.5% Si-Fe[J].Journal of Magnetism and Magnetic Materials,2008,320:611. |
[5] | Oda Y;Kohno M;Honda A .Recent development of non-oriented electrical steel sheet for automobile electrical devices[J].Journal of Magnetism and Magnetic Materials,2008(20):2430-2435. |
[6] | Cunha J et al.Low core loss non-oriented silicon steel[J].Journal of Magnetism and Magnetic Materials,2008,320(20):2485. |
[7] | Liang Y F et al.Microstructure and mechanical properties of rapidly quenched Fe6.5wt.% Si alloy[J].Journal of Alloys and Compounds,2010,504:43. |
[8] | Pan Limei et al.Experimental study on the influence of boron on mechanical properties of the Fe-6.5wt%Si alloys[J].J Funct Mater,2003,35(06):683. |
[9] | Ye Feng et al.Fe-6.5wt%Si high silicon steel sheets produced by cold rolling[J].Materials Science Forum,2010,638:1428. |
[10] | Pereloma E V et al.Silicon as grain refiner in niobium microalloyed hot rolled stee[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2001,299:27. |
[11] | 徐祖耀.材料热力学[M].北京:科学出版社,2005 |
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