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通过调控氢化-歧化-脱氢-再复合处理的各向异性前驱体的矫顽力来设计高剩磁钕铁硼热压磁体

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

作者信息

Yoo Jae-Gyeong, Kim Tae-Hoon, Cha Hee-Ryoung, Kim Yang-Do, Lee Jung-Goo

机构信息

Department of Magnetic Materials, Korea Institute of Materials Science, Changwon 51508, Republic of Korea.

Department of Materials Science and Engineering, Pusan National University, Busan 46241, Republic of Korea.

出版信息

Materials (Basel). 2023 Dec 11;16(24):7599. doi: 10.3390/ma16247599.

Abstract

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 (H) 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-H HDDR powders, a significantly higher remanence (11.2 kG) is achieved in the bulk than that achieved by hot-pressing the high-H 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-H 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.

摘要

我们提出了一种操控各向异性氢化-歧化-脱氢-重组(HDDR)粉末矫顽力的方法,仅使用热压工艺,无需后续热变形工艺,即可制造高剩磁和细晶粒钕铁硼磁体。通过降低各向异性HDDR前驱体的钕含量,使其矫顽力(Hc)降低,在磁取向步骤中,每个HDDR颗粒的c轴会很好地平行于外加磁场方向排列。这是因为相邻颗粒之间由其剩余磁化强度决定的磁斥力,会由于每个颗粒的低矫顽力而减小。因此,对低Hc的HDDR粉末进行热压后,块体材料的剩磁(11.2 kG)显著高于对高Hc的HDDR粉末进行热压所获得的剩磁(8.2 kG)。通过大规模电子背散射衍射(EBSD)分析清楚地证实,当使用低Hc的HDDR粉末制造热压磁体时,块体中各向异性HDDR颗粒的c轴排列得到了改善。这种对HDDR粉末矫顽力的操控可以成为一种有助于扩大HDDR粉末在制造各向异性钕铁硼块体磁体中应用的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33de/10744549/7fb428414f8b/materials-16-07599-g001.jpg

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