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Microstructural and magnetic properties of Nd-Fe-B alloys processed by equal-channel angular pressing

journal contribution
posted on 2015-01-01, 00:00 authored by E Onal, Rimma LapovokRimma Lapovok, H Kishimoto, A Kato, C H J Davies, K Suzuki
Equal-channel angular pressing (ECAP) is a well-established thermo-mechanical processing technique. This technique allows virtually unlimited strain and manipulation of texture by processing route, while the cross-section of the sample remains unchanged during processing. In order to clarify the effectiveness of ECAP on preparing anisotropic permanent magnets, the microstructure and magnetic properties of a melt-spun Nd13.5Fe73.8Co6.7B5.6Ga0.4 alloy processed at 773-K for 300-s by ECAP were investigated. Macrotexture analysis carried out for the exit channel of ECAP shows that the basal plane of the tetragonal Nd2Fe14B crystal aligns parallel to the shear band, i.e., the c-axis texture formation normal to the shear band induced by the ECAP process. Due to this texture formation, the technical magnetization behaviour becomes anisotropic, and the remanent magnetization is clearly enhanced along the direction perpendicular to the shear band. This anisotropic microstructure is realized at a relatively low processing temperature of 773-K, well below the melting point of the Nd-rich intergranular phase. As a consequence of this lower processing temperature, the nanostructure of the melt-spun alloy remains approximately 20 to 30-nm, considerably smaller than the typical grain size obtained after conventional die-upsetting. Our study demonstrates that equal-channel angular pressing has a potential for realising anisotropic nanostructured magnets.

History

Journal

Journal of applied physics

Volume

117

Issue

17

Season

Article Number : 17A742

Article number

17A742

Pagination

1 - 4

Publisher

American Institute of Physics Inc.

Location

College Park, MD

ISSN

0021-8979

eISSN

1089-7550

Language

eng

Publication classification

C Journal article; C1.1 Refereed article in a scholarly journal

Copyright notice

2015, American Institute of Physics Inc.

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