Strengthening magnetic and corrosion performances of NdFeB magnets via grain boundary diffusion with Tb element

IF 5.5 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Materials Characterization Pub Date : 2025-02-25 DOI:10.1016/j.matchar.2025.114881
Ming Ji , Hongguo Zhang , Weiqiang Liu , Xiangming Wang , Zhanjia Wang , Zizhen Guo , Haihui Wu , Ruihua Du , Shuhan Dong , Yuqing Li , Dongtao Zhang , Xiaofei Yi , Youhao Liu , Shanshun Zha , Ming Yue
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Abstract

The structure and phase modification of sintered Nd-Fe-B magnets through Tb diffusion from two different sources, nano TbHx and TbF3 particles, and their effects on magnetic and corrosion-resistant properties, were investigated. The results demonstrate that Tb diffusion from TbHx leads to an optimized microstructure with fewer anti-core-shell grains, a longer diffusion distance, and better magnetic isolation than TbF3. In contrast, TbF3 facilitates Tb diffusion into the main phase and also blocks its diffusion channels in the grain boundaries, resulting in accumulation at the surface and significantly reducing the diffusion efficiency of the Tb element. Additionally, the study reveals a key role of Tb in influencing the electrode potential of different phases and, consequently, the corrosion behavior of Nd-Fe-B magnets. Tb diffusion slightly increases the electrode potential of the shell of main phase grains while significantly increasing that of the NdO phase. It thus reduces the interphase potential difference thereby enhancing the corrosion resistance of the magnets. However, when TbF3 is used for diffusion, the formation of a new (Nd, Tb)-O-F phase, which exhibits significantly lower potential than the (Nd, Tb)-O phase, leads to a deterioration in corrosion resistance. These findings provide valuable insights into the magnetic and corrosion behaviors of grain boundary diffusion magnets and highlight key factors for developing advanced permanent magnets with enhanced overall performance.

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铌元素晶界扩散强化钕铁硼磁体的磁性和腐蚀性能
研究了纳米TbHx和TbF3两种不同来源的Tb扩散对Nd-Fe-B烧结磁体结构和相的改性,以及对磁性和耐腐蚀性的影响。结果表明,与TbF3相比,TbHx对Tb的扩散使其具有更少的反核-壳颗粒、更长的扩散距离和更好的磁隔离性能。而TbF3则有利于Tb向主相扩散,同时也阻断了其在晶界内的扩散通道,导致Tb元素在表面堆积,显著降低了Tb元素的扩散效率。此外,该研究还揭示了Tb在影响Nd-Fe-B磁体不同相电极电位从而影响其腐蚀行为方面的关键作用。Tb扩散使主相晶粒壳的电极电位略有升高,而使NdO相的电极电位显著升高。因此,它减少了相间电位差,从而提高了磁铁的耐腐蚀性。然而,当TbF3用于扩散时,形成一个新的(Nd, Tb)-O- f相,其电位明显低于(Nd, Tb)-O相,导致耐腐蚀性下降。这些发现为研究晶界扩散磁体的磁性和腐蚀行为提供了有价值的见解,并突出了开发具有增强整体性能的先进永磁体的关键因素。
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来源期刊
Materials Characterization
Materials Characterization 工程技术-材料科学:表征与测试
CiteScore
7.60
自引率
8.50%
发文量
746
审稿时长
36 days
期刊介绍: Materials Characterization features original articles and state-of-the-art reviews on theoretical and practical aspects of the structure and behaviour of materials. The Journal focuses on all characterization techniques, including all forms of microscopy (light, electron, acoustic, etc.,) and analysis (especially microanalysis and surface analytical techniques). Developments in both this wide range of techniques and their application to the quantification of the microstructure of materials are essential facets of the Journal. The Journal provides the Materials Scientist/Engineer with up-to-date information on many types of materials with an underlying theme of explaining the behavior of materials using novel approaches. Materials covered by the journal include: Metals & Alloys Ceramics Nanomaterials Biomedical materials Optical materials Composites Natural Materials.
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