Temperature stability and microstructure of ultra-high intrinsic coercivity Nd-Fe-B magnets
来源期刊:Rare Metals2008年第4期
论文作者:HU Zhihua a, b, CHENG Xinghua c, ZHU Minggang b, LI Wei b, and LIAN Fazeng a a Key Laboratory of the Ministry of Education of China for Anisotropy and Texture of Materials, Northeastern University, Shenyang , China b Division of Functional Materials, Central Iron & Steel Research Institute, Beijing , China c Advanced Technology and Materials Co. Ltd., Beijing , China
文章页码:358 - 361
摘 要:The variations of intrinsic coercivity and remanence of sintered Nd-Fe-B magnets with ultra-high intrinsic coercivity were investigated. The results showed that the intrinsic coercivity and remanence declined simultaneously with increasing temperature, but the squareness of the magnets has hardly been changed. The temperature coefficients of remanence (α) and coercivity (β) for the magnets were calculated by two different methods, and the variations of the temperature coefficients and the microstructure of sintered Nd-Fe-B magnets were analyzed. The temperature coefficients of remanence (α) and coercivity (β) for the sintered magnets are very small, and the existence of fine microstructure is necessary to obtain sintered Nd-Fe-B magnets with ultra-high intrinsic coercivity.
摘要:The variations of intrinsic coercivity and remanence of sintered Nd-Fe-B magnets with ultra-high intrinsic coercivity were investigated. The results showed that the intrinsic coercivity and remanence declined simultaneously with increasing temperature, but the squareness of the magnets has hardly been changed. The temperature coefficients of remanence (α) and coercivity (β) for the magnets were calculated by two different methods, and the variations of the temperature coefficients and the microstructure of sintered Nd-Fe-B magnets were analyzed. The temperature coefficients of remanence (α) and coercivity (β) for the sintered magnets are very small, and the existence of fine microstructure is necessary to obtain sintered Nd-Fe-B magnets with ultra-high intrinsic coercivity.
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