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首页> 外文期刊>Journal of materials science >Sintered Nd-Fe-B magnet with core-shell structures fabricated through the intergranular addition of ultra-fine as-disproportionated (Nd,Dy)-Fe-B-Cu powder
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Sintered Nd-Fe-B magnet with core-shell structures fabricated through the intergranular addition of ultra-fine as-disproportionated (Nd,Dy)-Fe-B-Cu powder

机译:烧结的ND-Fe-B磁体,具有通过晶体壳结构通过晶体添加的超细和不成比例(Nd,Dy)-fe-b-Cu粉末制备

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摘要

Ultra-fine as-disproportionated (Nd,Dy)-Fe-B-Cu powder was fabricated through mechanically activated disproportiona-tion and was incorporated into sintered Nd-Fe-B magnets through a "two-powder" method. The microstructure-coercivity relationships of the magnets were discussed. Results revealed the successful fabrication of bulk Nd-Fe-B magnet with core-shell structures through this process. The coercivity of the magnet was increased by 54.7% from 15 to 23.2 kOe when 20wt% as-disproportionated Dy-containing powder was added. This rapid coercivity enhancement was attributed to the enhanced local anisotropy field of the grain outer regions and the well-decoupled 2:14:1 grains. The increment of coercivity here was higher than that of the magnets obtained by using other Dy sources as the intergranular additives for the similar starting magnet and Dy concentration. Therefore, this work showed a promising fabrication method for a Nd-Fe-B magnet with high coercivity and Dy utilization efficiency.
机译:通过机械活化的歧化制造超细的不成比例(Nd,Dy)-Fe-B-Cu粉末,并通过“双粉末”方法掺入烧结的Nd-Fe-B磁体中。讨论了磁体的微观结构 - 矫顽力关系。结果表明,通过该方法将散装ND-Fe-B磁体的成功制造成功制造了核心壳结构。当加入20wt%的含量不成比例的含量粉末时,磁体的矫顽力从15至23.2只koe增加了54.7%。这种快速的矫顽力增强归因于晶粒外部区域的增强局部各向异性场和井 - 去耦2:14:1颗粒。这里的矫顽力的增量高于通过使用其他Dy源作为类似的起始磁体和Dy浓度的晶间添加剂获得的磁体的增量。因此,该工作显示了具有高矫顽力和Dy利用效率的ND-Fe-B磁体的有希望的制造方法。

著录项

  • 来源
    《Journal of materials science》 |2020年第9期|7211-7218|共8页
  • 作者

    Li Yuping; Wu Mengling; Li Jiayu;

  • 作者单位

    School of Materials Science and Engineering Nanjing Institute of Technology Nanjing 211167 China Jiangsu Key Laboratory of Advanced Structural Materials Anf Application Technology Nanjing 21 1 167 China;

    School of Materials Science and Engineering Nanjing Institute of Technology Nanjing 211167 China Jiangsu Key Laboratory of Advanced Structural Materials Anf Application Technology Nanjing 21 1 167 China;

    MIIT Key Laboratory of Thermal Control of Electronic Equipment School of Energy and Power Engineering Nanjing University of Science and Technology Nanjing 211167 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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