Microstructures and Magnetic Properties of Prnd-Free (CE, Re)-Fe-B  (Re = Y, La) Sintered Magnets

13 Pages Posted: 18 Nov 2022

See all articles by Anhua Li

Anhua Li

Central Iron & Research Institute

Haibo Feng

Central Iron & Research Institute

Wei Yang

affiliation not provided to SSRN

Wei Li

Central Iron & Research Institute

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Abstract

The phase constitutions and microstructure characteristics of PrNd-free (Ce, RE)-Fe-B (RE = Y, La) sintered magnets were investigated, and the effects of Y and La substitution on the microstructures and magnetic properties of Ce-based magnets were discussed. It indicated that the Ce-Fe-B strip casting (SC) alloy has an inhomogeneous lamellar crystalline structure, the uniformity of lamellar crystalline was improved by Y substitution, and an obvious refined crystalline structure has been obtained in the Y and La co-substituted SC alloy. The experimental Ce-based SC alloys were mainly composed of RE2Fe14B and REFe2 phases. Some “small islands” existing in REFe2 regions were identified as intermediate products of the peritectic reaction. It inferred that a trace amount of α-Fe existed in all the Ce-based SC alloys. The Ce-Fe-B sintered magnet has a large-grain microstructure, and several main-phase grains often directly contact without the isolation of RE-rich phases. Therefore, the intrinsic coercivity of the Ce-Fe-B sintered magnet was very low, equal to that of a soft magnetic material. The grains were obviously refined, and the grain boundary (GB) microstructures have been improved by Y and La co-substitution, and the magnetic properties of the corresponding magnet have increased remarkably. A Br of 8.31 kG, Hc j of 0.92 kOe, and (BH) max of 5.30 MGOe were obtained in the PrNd-free (Ce, Y, La)-Fe-B sintered magnet.

Keywords: Ce-Fe-B, Y and La substitution, phase constitutions, microstructure

Suggested Citation

Li, Anhua and Feng, Haibo and Yang, Wei and Li, Wei, Microstructures and Magnetic Properties of Prnd-Free (CE, Re)-Fe-B  (Re = Y, La) Sintered Magnets. Available at SSRN: https://ssrn.com/abstract=4280859 or http://dx.doi.org/10.2139/ssrn.4280859

Anhua Li (Contact Author)

Central Iron & Research Institute ( email )

Haibo Feng

Central Iron & Research Institute ( email )

Wei Yang

affiliation not provided to SSRN ( email )

Wei Li

Central Iron & Research Institute ( email )

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