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April 16, 2026Chinese Rare Earths0 citations

Research Progress on Grain Boundary Diffusion Sintering of Low-Melting-Point Alloy in Nd-Fe-B Materials

GXGuan-zhi XIANGHWHai-hui WUZWZhan-jia WANG

Key Points

  • The main aim is to explore how grain boundary diffusion can improve the magnetic properties of Nd-Fe-B materials using low-melting-point alloys.
  • Investigation of grain boundary diffusion processes (GBDP) in sintered Nd-Fe-B magnets.
  • Assessment of low-melting-point alloy diffusion sources for enhancing magnetic performance.
  • Analysis of microstructure optimization in magnetic materials.
  • Demonstrated that GBDP significantly increases the coercivity of Nd-Fe-B magnets.
  • Found that low-melting-point alloys can reduce the need for heavy rare earth elements.
  • Optimized microstructure contributes to improved magnetic properties of the materials.

Abstract

As an innovative technology that emerged in the 21st century, the grain boundary diffusion process (GBDP) enhances the coercivity of sintered Nd-Fe-B magnets through medium and low temperature thermal treatment, enabling heavy rare earth (HRE) elements to diffuse along grain boundaries into the interior of the magnet. This process forms a higher-anisotropy (Nd, HRE) 2Fe14B phase, optimizes the microstructure and thereby enchances the coercivity of the material. In order to improve the magnetic properties, reduce product costs and the usage of HRE, the development of low melting point alloy diffusion sources has emerged as a significant research focus. This article investigates the mechanism of the alloy diffusion source in enchancing magnet performance and optimizing grain boundary structures, summarizes the current advancements and prospects the future development of alloy diffusion technology.

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Cite This Study

XIANG et al. (2026) studied this question.

synapsesocial.com/papers/69e07c632f7e8953b7cbd9dbhttps://doi.org/10.3724/s1004-0277.20250008
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