期刊文献+

多晶CaB_6陶瓷弱铁磁性能与气孔率关系 被引量:2

Relationship of Ferromagnetic Property with Porosity of Polycrystalline CaB_6 Ceramics
在线阅读 下载PDF
导出
摘要 用常压烧结和热压烧结法分别制备了多晶Ca1+xB6(x=-0.02、0、0.02)陶瓷样品并对其铁磁性能进行系统分析.结果表明,在烧结温度低于1500℃范围内,不论样品富Ca或赤 Ca,所有的样品均呈现铁磁性能;另外,两种方法制备的陶瓷样品虽然气孔率明显不同,而其铁磁性能并没有显著差异,认为CaB6样品存在的铁磁性机制不决定于样品中的Ca空位浓度和气孔率. Polycrystalline Ca1+xB6(x= -0.02, 0, 0.02) ceramics were prepared by hot press and normal methods respectively and their ferromagnetic properties were analyzed systematically. The results indicate that all the samples prepared are ferromagnetic when sintering temperature is less than 1500℃. Though the porosity ratio of these samples prepared by these two methods is significant difference, the ferromagnetic properties are not changed with the changing porosity. We believe the ferromagnetism in the CaB6 ceramics is not concerned with the Ca vacancies or the porosity in the samples.
出处 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2006年第3期640-644,共5页 Journal of Inorganic Materials
关键词 多晶CaB6陶瓷 铁磁性能 气孔率 热压烧结 CaB6 ceramics ferromagnetic porosity hot press sinter
  • 相关文献

参考文献10

  • 1Young D P,Hall D,Torelli M E,et al.Nature,1999,397(4):412-414.
  • 2Souma S,Komatsu H,Takahashi T,et al.Physical Review Letters,2003 90 (2):027202.
  • 3Murakami S,Shindou R,Nagaosa N,Mishchenko A S.Physical Review B,2002,66 (18):184405.
  • 4Ceperley D.Nature,1999,397(4):386-387.
  • 5Zhitomirsky M E,Rice T M,Anisimov V I.Nature,1999,402(18):251-252.
  • 6Lofland S E,Seaman B,Ramanujachary K V,et al.Physical Review B,2003,67 (2):020410.
  • 7Gianno K,Sologubenko A V,Ott H R,et al.Journal of Physics-Condensed Matter,2002 14 (5):1035-1043.
  • 8Moriwaka T,Nishioka T,Sato N K.Journal of the Physical Society of Japan,2001,70(2):341-343.
  • 9Monnier R,Delley B.Physical Review Letters,2002,87(15):157204.
  • 10Vonlanthen P,Felder E,Degiorgi L,et al.Physical Review B,2001,62(15):10076.

同被引文献37

  • 1张光明,张本清.干压成型陶瓷气孔成因探析[J].真空电子技术,2007,20(4):85-86. 被引量:3
  • 2方舟,傅正义,王皓,王为民,张清杰.ZrB_2陶瓷的制备和烧结[J].中国有色金属学报,2005,15(11):1699-1704. 被引量:11
  • 3李理,杨丰科,侯耀永.纳米颗粒复合陶瓷材料[J].材料导报,1996,10(4):67-73. 被引量:22
  • 4郑遗凡,李国华,田伟,马淳安.纳米锐钛矿相变的原位XRD研究[J].无机化学学报,2007,23(6):1121-1125. 被引量:14
  • 5Paderno A N, Pademo Yu B, Martynenko A N, et al. Soviet Powder Metallurgy and Metal Ceramics, 1992, 31(10) : 863-866.
  • 6Ripplinger H, Schwarz K, Blaha P. Journal of Solid State Chemistry, 1997, 133(1): 51-54.
  • 7Tromp H J, Gelderen P V, Kelly P J, et al. Physical Review Letters, 2001, 87(1) : 016401-1-4.
  • 8Vonlanthen P, Felder E, Degiorgi L, et al. Physical Review B, 2000, 62(15) : 10076-10082.
  • 9Vonlanthen P, Felder E, Walti Ch, et al. Physica B, 2000, 284-288 : 1361-1362.
  • 10Serebryakova T I, Martynenko E N, Powder Metallurgy and Metal Ceramics, 1997, 36(11/12): 579-583.

引证文献2

二级引证文献8

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