Design of High-Remanence Nd-Fe-B Hot-Pressed Magnets by Manipulating Coercivity of Hydrogenation-Disproportionation-Desorption-Recombination Treated Anisotropic Precursors

矫顽力 剩磁 材料科学 磁铁 歧化 各向异性 磁化 热压 磁性纳米粒子 磁各向异性 复合材料 核磁共振 冶金 凝聚态物理 纳米颗粒 磁场 纳米技术 光学 化学 量子力学 物理 生物化学 催化作用
作者
Jae-Gyeong Yoo,Tae‐Hoon Kim,Hee-Ryoung Cha,Young Do Kim,Jung-Goo Lee
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:16 (24): 7599-7599 被引量:1
标识
DOI:10.3390/ma16247599
摘要

We propose a method of manipulating the coercivity of anisotropic hydrogenation-disproportionation-desorption-recombination (HDDR) powders to fabricate high-remanence and fine-grained Nd-Fe-B magnets using only hot-pressing without a subsequent hot-deformation process. By reducing the Nd content of anisotropic HDDR precursors such that their coercivity (Hcj) is lowered, the c-axis of each HDDR particle is well-aligned parallel to the direction of the applied magnetic field during the magnetic alignment step. This is because the magnetic repulsive force between adjacent particles, determined by their remanent magnetization, decreases as a result of the low coercivity of each particle. Therefore, after hot-pressing the low-Hcj HDDR powders, a significantly higher remanence (11.2 kG) is achieved in the bulk than that achieved by hot-pressing the high-Hcj HDDR powders (8.2 kG). It is clearly confirmed by the large-scale electron backscatter diffraction (EBSD) analysis that the alignment of the c-axis of each anisotropic HDDR particle in the bulk is improved when low-Hcj HDDR powders are used to fabricate hot-pressed magnets. This coercivity manipulation of HDDR powders can be a helpful method to expand the use of HDDR powders in fabricating anisotropic Nd-Fe-B bulk magnets.

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