期刊文献+

Synthesis and characterization of Nd doped M-type hexagonal barium ferrite ultrafine powders

Synthesis and characterization of Nd doped M-type hexagonal barium ferrite ultrafine powders
下载PDF
导出
摘要 The hexagonal BaNd x Fe 12- x O 19 ( x =0.1 1 0) fine powders with M type structure were synthesized by sol gel auto combustion high temperature synthesis method. The structure of powders, gels′ combustion and magnetic properties of powders were respectively studied by means of X ray diffractometer (XRD), differential thermal analysis thermogravimetric analysis (DTA TG) and vibrating sample magnetometer (VSM). The powders before and after combustion and calcination at 450 850 ℃ with different mole ratio of Nd to Ba (0.1 1.0) were compared in terms of XRD. In addition, the effects of different synthesis conditions on magnetic properties of powders were also discussed. The results show that at pH 7.0 or so, mole ratio of citrate to nitrate (1 3) and calcination temperature of 850 ℃ for 1 h, M type BaNd x Fe 12- x O 19 ( x =0.1 1.0) fine powders can be obtained, and the coercive force reaches 436880 A·m -1 at x =1, which is far greater than that of barium permanent ferrite (BaFe 12 O 19 ). The hexagonal BaNd x Fe12?x O19(x=0.1?1.0) fine powders with M-type structure were synthesized by sol-gel auto-combustion high-temperature synthesis method. The structure of powders, gels’ combustion and magnetic properties of powders were respectively studied by means of X-ray diffractometer (XRD), differential thermal analysis-thermogravimetric analysis (DTA-TG) and vibrating sample magnetometer (VSM). The powders before and after combustion and calcination at 450–850 °C with different mole ratio of Nd to Ba (0.1–1.0) were compared in terms of XRD. In addition, the effects of different synthesis conditions on magnetic properties of powders were also discussed. The results show that at pH 7.0 or so, mole ratio of citrate to nitrate (1–3) and calcination temperature of 850 °C for 1 h, M-type BaNd x Fe12?x O19(x=0.1?1.0) fine powders can be obtained, and the coercive force reaches 436880 A·m?1 at x=1, which is far greater than that of barium permanent ferrite (BaFe12O19).
出处 《Journal of Central South University of Technology》 EI 2001年第2期130-134,共5页 中南工业大学学报(英文版)
关键词 大音阶的第五音胶化方法 稀土元素元素 永久铁酸盐 citate 极其细小的粉末 sol-gel method rare earth element permanent ferrite citate ultrafine powder
  • 相关文献

参考文献10

  • 1TIAN Yu lin.Preparation and magnetic properties of oriented barium ferrite ultrafine powders,1989(01).
  • 2DOUYou-wei.Ferrite,1996.
  • 3Pankov V V;Pernet M;Germi P.Fine hexaferrite particles for perpendicular recording prepared by the coprecipitation method in the presence of an inert component,1993.
  • 4Roos W.Formation of chemically coprecipitated barium ferrite,1980(11-12).
  • 5Haneda K;Kojima H.Magnetization reversal process in chemically precipitated and ordinary prepared BaFe12O19,1973.
  • 6Ataie A;Harris R;Ponton C B.Magnetic properties of hydrothermally synthesized strontium hexaferrite as a function of synthesis conditions[J],1995(06).
  • 7Lin C H;Shih Z W;Chin T S.Hydrothermal processing to produce magnetic particulates[J],1990(01).
  • 8Haneda K;Miyakawa C;Goto K.Preparation small particles of SrFe12O19 with high coercivity by hydrolysis of metal-organic complexes,1987.
  • 9Oda K;Yoshio T;O Oka K.Magnetic properties of SrFe12O19 particles prepared by the glass-ceramic method[J],1984(11).
  • 10Pillai Vinod;Kumar Promod;Shah D O.Magnetic properties of barium ferrite synthesized using a microemulsion mediated process,1992.

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