Wang Dengyue, Li Anhua, Feng Haibo, Li Wei
Division of Functional Materials, Central Iron & Steel Research Institute, Beijing, 100081, China.
Heliyon. 2024 Feb 28;10(5):e27245. doi: 10.1016/j.heliyon.2024.e27245. eCollection 2024 Mar 15.
Up to now, the development of Ce/RE> 80% sintered permanent magnets still faces a challenge, owing to their seriously deteriorated microstructure. In this article, the CeNdFeBM (wt.%) sintered magnets with Ce/RE > 80% were investigated, the roles of minor Nd substitution were explored. The typical island-like phase common existed in the grain-boundary (GB) regions of CeFeB-based SC alloys (which destroys the continuity of RE-rich GB phase), was confirmed as a tetragonal B-rich phase (fct-REFeB), and probably generated by the peritectic reaction of "L + CeFeB → CeFe + B-rich" at 797 °C. It was found that: the deteriorated microstructures of high Ce sintered magnets were hardly improved (Nd element was not enriched in the main phase as it was expected), and the coercivity increments were far below expectations by directly adding 3-5% Nd in alloy designs. However, the GB phase distribution was more uniform and continuous, Nd-rich shells formed, and magnetic properties were remarkably promoted by blending 2% NdH powders into the CeNdFeBM (CeNd) magnet during JM milling, compared with the CeNdFeBM (CeNd) magnet with similar composition. The good comprehensive magnetic properties of = 1.714 kOe, = 9.395 kG, and () = 11.16 MGOe have been reached in the CeNd+2% (NdH) magnet (Ce accounted for 84.5 wt% of total rare earth). The present work deepens our understanding of metallurgical behavior, process/microstructure designing for Ce/RE> 80% sintered magnets, and shed a light on the large-scale utilization of Ce element in a permanent magnet.
到目前为止,Ce/RE>80%的烧结永磁体的发展仍面临挑战,这是由于其微观结构严重恶化。在本文中,对Ce/RE>80%的CeNdFeBM(重量%)烧结磁体进行了研究,探讨了微量Nd替代的作用。在CeFeB基SC合金的晶界(GB)区域普遍存在的典型岛状相(它破坏了富RE的GB相的连续性),被确认为四方富B相(fct-REFeB),可能是由797℃下的“L+CeFeB→CeFe+B富相”包晶反应产生的。研究发现:高Ce烧结磁体恶化的微观结构几乎没有得到改善(Nd元素没有如预期那样在主相中富集),并且在合金设计中直接添加3-5%的Nd,矫顽力增量远低于预期。然而,与具有相似成分的CeNdFeBM(CeNd)磁体相比,在JM球磨过程中将2%的NdH粉末混入CeNdFeBM(CeNd)磁体中时,GB相分布更均匀、连续,形成了富Nd壳层,磁性能得到显著提升。在CeNd+2%(NdH)磁体(Ce占总稀土的84.5重量%)中达到了良好的综合磁性能,即=1.714kOe,=9.395kG,以及()=11.16MGOe。目前的工作加深了我们对Ce/RE>80%烧结磁体的冶金行为、工艺/微观结构设计的理解,并为永磁体中Ce元素的大规模利用提供了启示。