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Effects of Sn Addition on Core Loss and Texture in Non-oriented Electrical Steels

DONG Hao , ZHAO Yu , YU Xiaojun , LIAN Fazeng

钢铁研究学报(英文版)

The effects of Sn addition on core loss and texture of nonoriented electrical steels were investigated. Experiments revealed that the core loss of nonoriented electrical steels could be obviously decreased and the intensity of {111} texture and {112} texture of final annealed specimens could be markedly reduced by Sn addition. The reasons for reducing core loss and the intensity of unfavorable texture were analyzed.

关键词: non-oriented;Sn;segregation;core loss;texture

Improved Electrical Insulation of Rare Earth Permanent Magnetic Materials With High Magnetic Properties

CHANG Ying , WANG Dapeng , LI Wei , PAN Wei , YU Xiaojun , QI Min

钢铁研究学报(英文版)

Rare earth permanent magnetic materials are typical electrical conductor, and their magnetic properties will decrease because of the eddy current effect, so it is difficult to keep them stable for a long enough time under a high frequency AC field. In the present study, as far as rare earth permanent magnets are concerned, for the first time, rare earth permanent magnets with strong electrical insulation and high magnetic performance have been obtained through experiments, and their properties are as follows: (1) Sm2TM17: Br=062 T, jHc=8037 kA/m, (BH)m=5897 kJ/m3, ρ=7 Ω·m; (2) NdFeB: Br=0485 T, jHc=76633 kA/m, (BH)m=3796 kJ/m3, ρ=9 Ω·m. The magnetic properties of Sm2TM17 and NdFeB are obviously higher than those of ferrite permanent magnet, and the electric insulating characteristics of Sm2TM17 and NdFeB applied have in fact been approximately the same as those of ferrite. Therefore, Sm2TM17 and NdFeB will possess the ability to take the place of ferrite under a certain high frequency AC electric field.

关键词: Sm2TM17;NdFeB;electrical insulation;eddy current

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