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首页> 外文期刊>Journal of magnetism and magnetic materials >Boundary structure modification and coercivity enhancement of the Nd-Fe-B magnets with TbCu doping by the process of pre-sintering and hot-pressing
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Boundary structure modification and coercivity enhancement of the Nd-Fe-B magnets with TbCu doping by the process of pre-sintering and hot-pressing

机译:TbCu掺杂预烧结和热压工艺对Nd-Fe-B磁体的边界结构改性和矫顽力增强

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摘要

The high-coercivity Nd-Fe-B magnets with "core-shell" structure grains were prepared by doping TbCu powders and hot pressing after pre-sintering in the traditional powder metallurgy process. The coercivity for the hot-pressed pretreated Nd-Fe-B magnet is obviously enhanced to 28.6 kOe from 24.3 kOe by TbCu alloy doping. The Tb contents at the shell structure of grain in the hot-pressed pretreated magnet is 5.7 wt% while that in the dual-alloy magnet is 3.0 wt%. The enrichment of Tb elements in the shell layer further enhances the anisotropy of the grain surface and effectively improves the utilization efficiency of heavy rare earths. The existence of the hard (Tb, Nd)(2)Fe14B shell, which can effectively inhibit the reverse nucleation of magnetic domains, contribute to enhance the coercivity with few reduction of the remanence. Compared with the grain boundary diffusion process, this technology can be used to prepare large pieces of high performance Nd-Fe-B bulk magnets without diffusion depth limit.
机译:具有“核-壳”结构晶粒的高矫顽力Nd-Fe-B磁体是通过掺杂TbCu粉末并在传统粉末冶金工艺中进行预烧结后进行热压制得的。通过TbCu合金掺杂,将热压预处理Nd-Fe-B磁体的矫顽力从24.3 kOe明显提高到28.6 kOe。在热压预处理磁体中,晶粒的壳结构中的Tb含量为5.7wt%,而在双合金磁体中,为3.0wt%。壳层中Tb元素的富集进一步增强了晶粒表面的各向异性,并有效地提高了重稀土的利用效率。硬(Tb,Nd)(2)Fe14B壳的存在可以有效抑制磁畴的反向成核,有助于提高矫顽力,而剩磁很少降低。与晶界扩散工艺相比,该技术可用于制备大尺寸的高性能Nd-Fe-B大块磁体,而不受扩散深度的限制。

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