...
首页> 外文期刊>IEEE Transactions on Magnetics >Manufacturing of Die-Upset Rare Earth–Iron–Boron Magnets With (Ce,La)-Mischmetal
【24h】

Manufacturing of Die-Upset Rare Earth–Iron–Boron Magnets With (Ce,La)-Mischmetal

机译:(Ce,La)-Mischmetal的-锻稀土-铁-硼磁体的制造

获取原文
获取原文并翻译 | 示例
           

摘要

Utilization of the relatively abundant and inexpensive (Ce,La)-mischmetal in manufacturing die-upset R-Fe-B magnets (R = rare earth) from melt-spun nanocrystalline alloys was attempted via: 1) the standard single-alloy process; 2) the diffusion of Nd and Pr from low-melting-temperature alloys blended into the magnet; and 3) the diffusion of Nd and Pr by infiltrating the magnet through its surface. No practically viable magnetic properties could be obtained without the introduction of Nd(Pr). Blending with the (Nd,Pr)-rich alloys was found to be less efficient for the development of coercivity than the single-alloy process; so was the infiltration of those precursors which had been alloyed with 0.5 at.% Ga. More efficient than the single-alloy process was infiltration of those precursors which had been alloyed with 2 at.% Si or with 1 at.% Zn. Coercivities of 7-10 kOe and energy products of 17-20 MGOe were obtained for magnets having 43%-55% of the R elements represented by Ce0.65La0.35 and containing overall 7.5-9.7 at.% Nd(Pr). The coercivity of the significantly hyper-stoichiometric (17-19 at.% R) (Ce,La)-containing alloys was found to decline 80% or more as a result of the deformation process, but partially recover after subsequent annealing. The latter improvement is likely to be caused by redistribution of the R-rich phases.
机译:试图通过熔纺纳米晶体合金制造模锻的R-Fe-B磁体(R =稀土)来利用相对丰富且廉价的(Ce,La)-混合金属:1)标准的单合金工艺; 2)Nd和Pr从掺入磁铁的低熔点合金中扩散出来; 3)Nd和Pr的扩散是通过磁体表面的渗透。如果不引入Nd(Pr),将无法获得实用的磁性能。与单合金工艺相比,与富含(Nd,Pr)的合金共混对矫顽力的开发效率较低。与0.5%的Ga合金化的那些前体的浸渗也是如此。与单合金工艺相比,与2%的Si或1%的Zn合金化的前驱体的浸渗效率更高。对于具有Ce 0.65 La 0.35 表示的R元素占43%-55%的磁体,其矫顽力为7-10 kOe,能量积为17-20 MGOe。总Nd(Pr)为7.5-9.7 at。%。由于变形过程,发现含有显着超化学计量比(R 17-19 at。%)(Ce,La)的合金的矫顽力下降了80%或更多,但在随后的退火后部分恢复了。后一种改善可能是由于富R相的重新分布引起的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号