Iron Loss Influenced by Magnetic Annealing in 0.1-mm-Thick Grain-Oriented High-Silicon Steels
The influence of magnetic annealing on iron loss has been investigated in 0.1-mm-thick grain-oriented high-silicon steels. To prepare such thin high-silicon steels, 0.3-mm-thick commercial electrical steels were mechanically ground to a specific thickness and then annealed at 1200°C under a high vac...
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Published in | IEEE transactions on magnetics Vol. 47; no. 10; pp. 3208 - 3211 |
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Main Authors | , , , |
Format | Journal Article Conference Proceeding |
Language | English |
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New York, NY
IEEE
01.10.2011
Institute of Electrical and Electronics Engineers |
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Abstract | The influence of magnetic annealing on iron loss has been investigated in 0.1-mm-thick grain-oriented high-silicon steels. To prepare such thin high-silicon steels, 0.3-mm-thick commercial electrical steels were mechanically ground to a specific thickness and then annealed at 1200°C under a high vacuum atmosphere. Due to much faster evaporation of Fe than Si, strip thickness decreased and silicon content increased. The 0.23-mm-thick 3% Si samples typically were thinned to a thickness of 0.10 mm, and silicon content increased to 6.5% after annealing for approximately 50 h. The high-silicon steels were further magnetically annealed at 770°C in a dc magnetic field, and an excellent iron loss of around 0.65 W/kg (at 1.5 T/60 Hz) was obtained. The iron loss behavior with both siliconizing and magnetic annealing processes is discussed in the light of microstructural evolution of B2 ordering phases and domain boundary drag effect of surface subsidiary domains. |
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AbstractList | The influence of magnetic annealing on iron loss has been investigated in 0.1-mm-thick grain-oriented high-silicon steels. To prepare such thin high-silicon steels, 0.3-mm-thick commercial electrical steels were mechanically ground to a specific thickness and then annealed at 1200°C under a high vacuum atmosphere. Due to much faster evaporation of Fe than Si, strip thickness decreased and silicon content increased. The 0.23-mm-thick 3% Si samples typically were thinned to a thickness of 0.10 mm, and silicon content increased to 6.5% after annealing for approximately 50 h. The high-silicon steels were further magnetically annealed at 770°C in a dc magnetic field, and an excellent iron loss of around 0.65 W/kg (at 1.5 T/60 Hz) was obtained. The iron loss behavior with both siliconizing and magnetic annealing processes is discussed in the light of microstructural evolution of B2 ordering phases and domain boundary drag effect of surface subsidiary domains. |
Author | Kim, Sang-Beom Jung, Heejong Shin, Koo-Yong Soh, Joon-Young |
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Keywords | highsilicon steel Annealing Iron loss Fe evaporation magnetic annealing Steels Heat treatments Magnetic properties |
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References | ref15 ruder (ref5) 1942; 30 kim (ref9) 2008; 44 ref14 ref11 ref10 barrett (ref17) 1973 ref2 rosebury (ref12) 1992 ref16 ref19 ref18 ref8 hull (ref13) 1999 ref7 cullity (ref1) 1972 ref4 ref3 ref6 |
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Snippet | The influence of magnetic annealing on iron loss has been investigated in 0.1-mm-thick grain-oriented high-silicon steels. To prepare such thin high-silicon... |
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SubjectTerms | Annealing Cross-disciplinary physics: materials science; rheology Exact sciences and technology Fe evaporation high-silicon steel Iron iron loss magnetic annealing Magnetic domain walls Magnetic domains Magnetomechanical effects Materials science Other topics in materials science Physics Silicon Steel |
Title | Iron Loss Influenced by Magnetic Annealing in 0.1-mm-Thick Grain-Oriented High-Silicon Steels |
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