期刊文献+

纳米复合(NdDy)_2(FeNb)_(14)B/α-Fe永磁合金 被引量:7

(NdDy)_2(FeNb)_(14)B/α-Fe Nanocomposite Permanent Alloys
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摘要 采用单辊急冷法并晶化退火制备了高剩磁、高矫顽力和高磁能积的(NdDy)2(FeNb)14B/α-Fe纳米复合永磁合金,其最佳磁性能分别为Br=1.02T,Hci=702KA/m,(BH)max=134KJ/m3.合金的组织结构由硬磁相(NdDy)2(FeNb)14B和软磁相α-Fe在纳米级范围内复合而成·两相的平均晶粒尺寸为30nm.该种合金优异的磁性能起源于纳米晶硬磁相和软磁相之间的磁交换耦合作用. High coercivity, high remanence, and high energy product (NdDy)2(FeNb)14B/α-Fe nanocrystalline alloys are prepared by melt spining and subsequent annealing. Thebest properties of remanence (Br), coercivity (Hci) and maximum energy product ((BH)max)are 1.02 T, 702 kA/m and 134 kJ/m3, respectively. The microstructure of the two phasenanocomposite consists of hard magnetic (NdDy)2(FeNb)14B and soft magnetic α-Fe withan average size of 3O nm. These small dimensions allow effective exchange couplingbetween hard and soft magnetic grains and result in the simultaneous enhancement of Br,Hci and (BH)max.
出处 《北京科技大学学报》 EI CAS CSCD 北大核心 1997年第1期75-78,共4页 Journal of University of Science and Technology Beijing
关键词 交换耦合 永磁合金 复合永磁合金 纳米级 nanocomposite permanent magnets, exchange coupling, remanence enhancement
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参考文献2

  • 1Ding J,J Magn Magn Mater,1993年,124卷,1页
  • 2周寿增,稀土永磁材料及其应用,1990年,378页

同被引文献54

  • 1邹汉昌,张茂才,包小倩,高学绪,周寿增.Zr和Nb掺杂对Nd_2Fe_(14)B/α-Fe纳米复合永磁薄带显微组织和磁性能的影响[J].北京科技大学学报,2006,28(4):365-368. 被引量:6
  • 2王占勇,刘文庆,周邦新,倪建森,徐晖.Nb对Nd_2Fe_(14)B/α-Fe纳米复合永磁材料结构和磁性能的影响[J].稀有金属材料与工程,2007,36(5):830-834. 被引量:14
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