期刊文献+

Phase Transformation and Magnetic Properties of Mechanically Alloyed PrCo5-based Magnets 被引量:1

Phase Transformation and Magnetic Properties of Mechanically Alloyed PrCo_5-based Magnets
下载PDF
导出
摘要 PrCo5-based nanograin Pr=CO100-x (x=14-22) alloys with high coercivity were synthesized by mechanical alloying and subsequent annealing. The crystallization, phase components and magnetic properties of the alloys were investigated systematically. The main phase of the alloy for x=14 is Pr2CO17 with rhombohedral Th2Zn17-type. The amount of the Pr2CO17 phase decreases with increasing Pr content, and a nearly single phase PrCo5 with hexagonal CaCu5-type is formed in Pr18Co81 alloy. Further increase in the Pr content leads to the formation of another magnetically hard Pr2Co7 phase with its Curie temperature about 350℃. Remanences decrease monotonously with increasing Pr content, whereas the coercivities increase, reaching a maximum of 2040 kA/m (25.6 kOe) in Pr19CO81 powders milled for 5 h and annealed at 973 K for 2 min, and then decrease for higher Pr content. The high coercivity is attributed to the high anisotropy field of the PrCo~ phase and its nanoscale grain size. PrCo5-based nanograin Pr=CO100-x (x=14-22) alloys with high coercivity were synthesized by mechanical alloying and subsequent annealing. The crystallization, phase components and magnetic properties of the alloys were investigated systematically. The main phase of the alloy for x=14 is Pr2CO17 with rhombohedral Th2Zn17-type. The amount of the Pr2CO17 phase decreases with increasing Pr content, and a nearly single phase PrCo5 with hexagonal CaCu5-type is formed in Pr18Co81 alloy. Further increase in the Pr content leads to the formation of another magnetically hard Pr2Co7 phase with its Curie temperature about 350℃. Remanences decrease monotonously with increasing Pr content, whereas the coercivities increase, reaching a maximum of 2040 kA/m (25.6 kOe) in Pr19CO81 powders milled for 5 h and annealed at 973 K for 2 min, and then decrease for higher Pr content. The high coercivity is attributed to the high anisotropy field of the PrCo~ phase and its nanoscale grain size.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第6期843-845,共3页 材料科学技术(英文版)
基金 This work was supported by the National Natural Science Foundation of China under Grant Nos.50331030 and 50071062 and 59725103.
关键词 Pr-Co magnets Phase transformation Magnetic properties Mechanical alloying Pr-Co magnets Phase transformation Magnetic properties Mechanical alloying
  • 相关文献

参考文献12

  • 1[1]G.C.Hadjipanayis:J.Magn.Magn.Mater.,1999,200,373.
  • 2[2]E.F.Kneller and R.Hawig:IEEE Trans.Magn.,1991,27,3588.
  • 3[3]L.Schultz,K.Schnitzke,J.Wecker,M.Katter and C.Kuhrt:J.Appl.Phys.,1991,70,6339.
  • 4[4]Z.D.Zhang,W.Liu,J.P.Liu and D.J.Sellmyer:J.Phys.D,2000,33,R217.
  • 5[5]L.Schultz,J.Wecker and E.J.Hellstern:J.Appl.Phys.,1987,61,3583.
  • 6[6]X.G.Zhao,Z.D.Zhang,W.Liu,Q.Wang and X.K.Sun:J.Mater.Sci.Technol.,1995,11,1.
  • 7[7]W.Liu,Q.Wang,X.K.Sun,X.G.Zhao,T.Zhao,Z.D.Zhang and Y.C.Chuang:J.Magn.Magn.Mater.,1994,131,413.
  • 8[8]J.Ding,P.G.McCormick and R.Street:J.Magn.Magn.Mater.,1993,124,1.
  • 9[9]J.Zhou,R.Skomski and D.J.Sellmyer:IEEE Trans.Magn.,2001,37,2518.
  • 10[10]K.J.Strant:in Ferromagnetic Materials,eds.by E.P.Wohlfarth and K.H.J.Buschow,North-Holland,Amsterdam,1988,4.131.

同被引文献10

引证文献1

二级引证文献2

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