Improving the magnetic properties of Nd–Fe–B sintered magnets by the grain boundary diffusion of Pr-LRE-Tb-Cu-Al (LRE = None, La, Nd, and Ce) alloys using stamp coating

材料科学 磁铁 涂层 晶界 晶界扩散系数 冶金 扩散 粒度 复合材料 扩散焊 微观结构 矫顽力 有效扩散系数 粉末冶金 磁场
作者
Dong Hyun Lee,Seong Chan Kim,H. Jeong,Vitalii Galkin,Jae-Geun Ha,Ju-Young Baek,Tae-Young Yun,Jong Tae Kim,Seok-Hwan Chung,Sumin Kim,Dong Hwan Kim,Sang Hyub Lee,Jong Wook Roh,Dong Hwan Kim,Jeongmin Kim
出处
期刊:Journal of materials research and technology [Elsevier BV]
卷期号:41: 128-137 被引量:5
标识
DOI:10.1016/j.jmrt.2025.12.041
摘要

Nd–Fe–B sintered magnets exhibit a high maximum energy product and have been utilized in a wide range of applications. Herein, we report that the stamp coating method using powder-type diffusion sources improves the magnetic properties of Nd–Fe–B sintered magnets through the grain boundary diffusion (GBD) process. Compared with the conventional dip-coating method based on slurry-type diffusion sources, stamp coating provided a comparable coercivity improvement with simplified processing. Based on the stamp coating method, diffusion sources in which 80 wt% of heavy rare-earth (HRE) elements were substituted with light rare-earth (LRE) elements and transition metals were investigated. The Pr 60 Tb 20 Cu 15 Al 5 -GBD magnet exhibited magnetic properties comparable to those of a pure Tb-GBD magnet, while significantly reducing Tb usage. Moreover, in pursuit of a more cost-effective diffusion source, Pr 40 LRE 20 Tb 20 Cu 15 Al 5 -GBD magnets (LRE = La, Nd, Ce) with the additional partial substitution of expensive Pr were evaluated. The increase in coercivity per Tb usage (kOe/wt.% Tb) of the Pr 60 Tb 20 Cu 15 Al 5 - and Pr 40 LRE 20 Tb 20 Cu 15 Al 5 -GBD magnets (∼20 kOe/wt.%) were considerably higher than those of Tb 100 -GBD magnets (6.4 kOe/wt.%). Furthermore, the Tb-reduced GBD magnets showed improved thermal stability compared to that of the Tb-GBD magnet. These findings demonstrate that the cost of the GBD process can be effectively reduced through stamp coating and the substitution of costly HRE and LRE elements, thereby providing a promising strategy for the development of high-performance Nd–Fe–B sintered magnets.
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