期刊文献+

Abnormal variation of magnetic properties with Ce content in(PrNdCe)_2Fe_(14)B sintered magnets prepared by dual alloy method 被引量:4

Abnormal variation of magnetic properties with Ce content in(PrNdCe)_2Fe_(14)B sintered magnets prepared by dual alloy method
下载PDF
导出
摘要 Resource-saving(PrNdCe)_2Fe_(14)B sintered magnets with nominal composition(PrNd)_(15-x)Ce_xFe_(77)B_8(x=0–10)were prepared using a dual alloy method by mixing(PrNd)_5Ce_(10)Fe_(77)B_8 with(PrNd)_(15)Fe_(77)B_8 powders. For Ce atomic percent of 1% and 2%, coercivity decreases dramatically. With further increase of Ce atomic percent, the coercivity increases, peaks at 6.38 kOe in(PrNd)_(11)Ce_4Fe_(77)B_8, and then declines gradually. The abnormal dependence of coercivity is likely related to the inhomogeneity of rare earth chemical composition in the intergranular phase, where Pr Nd concentration is strongly dependent on the additive amount of(PrNd)_5Ce_(10)Fe_(77)B_8 powders. In addition, for Ce atomic percent of 8%,7%, and 6% the coercivity is higher than that of magnets prepared by the conventional method, which shows the advantage of the dual alloy method in preparing high abundant rare earth magnets. Resource-saving(PrNdCe)_2Fe_(14)B sintered magnets with nominal composition(PrNd)_(15-x)Ce_xFe_(77)B_8(x=0–10)were prepared using a dual alloy method by mixing(PrNd)_5Ce_(10)Fe_(77)B_8 with(PrNd)_(15)Fe_(77)B_8 powders. For Ce atomic percent of 1% and 2%, coercivity decreases dramatically. With further increase of Ce atomic percent, the coercivity increases, peaks at 6.38 kOe in(PrNd)_(11)Ce_4Fe_(77)B_8, and then declines gradually. The abnormal dependence of coercivity is likely related to the inhomogeneity of rare earth chemical composition in the intergranular phase, where Pr Nd concentration is strongly dependent on the additive amount of(PrNd)_5Ce_(10)Fe_(77)B_8 powders. In addition, for Ce atomic percent of 8%,7%, and 6% the coercivity is higher than that of magnets prepared by the conventional method, which shows the advantage of the dual alloy method in preparing high abundant rare earth magnets.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第5期352-356,共5页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.51461033,51571126,51541105,and 11547032) the Natural Science Foundation of Inner Mongolia,China(Grant No.2013MS0110) the Inner Mongolia University of Science and Technology Innovation Fund,China
关键词 permanent magnets Ce element dual alloy method COERCIVITY permanent magnets Ce element dual alloy method coercivity
  • 相关文献

参考文献35

  • 1Sagawa M, Fujimura S, Togawa N+ Yamamoto H and Matsuura Y 1984 J. AppL Phys. 55 2083.
  • 2Croat J J, Herbst J F, Lee R W and Pinkerton F E 1984 AppL Phys. Lett. 44 148.
  • 3Cai L W, Guo S, Ding G F, Chen R J, Liu J, Lee D and Yan A R 2015 Chin. Phys. B 24 097505.
  • 4Herbst J F 1991 Re~: Mod. Phys. 63 819.
  • 5Burzo E 1998 Rep. Prog. Phys. 61 1099.
  • 6Wang X C, Zhu M G, Li W, Zheng L Y, Zhao D L, Du X and Du A 2015 Electron. Mater Lett. 11 109.
  • 7Coey J M D 2012 Scripta Mater. 67 524.
  • 8Chang H W, Chen C H, Hsieh C C and Chang W C 2011 J. Nanosci. Nanotechnol. 11 2756.
  • 9Zhang M, Li Z B, Shen B G, Hu F X and Sun J R 2015 J. Alloys Compd. 651 144.
  • 10Skoug E J, Meyer M S, Pinkerton F E, Tessema M M, Haddad D and Herbst J F 2013 J. Alloys Compd. 574 552.

同被引文献16

引证文献4

二级引证文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部