학술논문

Novel Powder Processing Technologies for Production of Rare-earth Permanent Magnets / 希土類永久磁石のための新しい粉体粉末冶金技術
Document Type
Journal Article
Source
粉体および粉末冶金 / Journal of the Japan Society of Powder and Powder Metallurgy. 2022, 69(Supplement):30
Subject
Sm2Fe17N3
coercivity
powder synthesis
rare-earth permanent magnets
sintering
Language
Japanese
ISSN
0532-8799
1880-9014
Abstract
Post-neodymium magnets that possess high heat resistance, coercivity, and (BH)max are desired for future-generation motors. However, the candidate materials for post-neodymium magnets such as Sm2Fe17N3 and metastable magnetic alloys have certain process-related problems: low sinterability due to thermal decomposition at elevated temperatures, deterioration of coercivity during sintering, and the poor coercivity of the raw powder. Various developments in powder processing are underway with the aim of overcoming these problems. So far, the development of advanced powder metallurgy techniques has achieved Sm2Fe17N3 anisotropic sintered magnets without coercivity deterioration, and advances in chemical powder synthesis techniques have been successful in producing Sm2Fe17N3 fine powders with huge coercivity. The challenge of a new powder process is expected to open the way to realizing post-neodymium magnets.