DocumentCode :
1077893
Title :
Composition and microstructure dependent spin reorientation in nanocrystalline (Nd-Pr)-(Fe-Co)-B alloys
Author :
Liu, Zhongwu ; Davies, Hywel A.
Author_Institution :
Dept. of Eng. Mater., Univ. of Sheffield, UK
Volume :
40
Issue :
4
fYear :
2004
fDate :
7/1/2004 12:00:00 AM
Firstpage :
2898
Lastpage :
2900
Abstract :
The effects of composition, grain size and exchange coupling on the spin-reorientation temperature (TSR) for nanocrystalline (Nd-Pr)-(Fe-Co)-B alloys have been systematically studied. Although TSR is usually considered to be an intrinsic magnetic property, it is nevertheless influenced by the microstructure when the grain size decreases to the nanometer level. The TSR for all single phase nanocrystalline Nd12Fe82B6 alloys were lower than the published value for a single crystal or for an aligned sintered NdFeB magnet. The results consistently demonstrate that the increasing degree of exchange coupling between the RE2Fe14B nano-grains with decreasing grain size leads to a progressive decrease in TSR. As is the case for conventional NdFeB alloys, Pr substitution for Nd decreases TSR linearly and rapidly with increasing Pr concentration but a spin reorientation still occurs at 75% Pr substitution (TSR≈25 K). Co substitution for Fe also decreases TSR, but to a lower degree than Pr for Nd. Introduction of an increasing volume fraction of soft magnetic α-(Fe-Co) phase into the nanocrystalline Nd2Fe14B alloy has no significant influence on the value of TSR in spite of the influence of α-(Fe-Co) on the exchange coupling.
Keywords :
boron alloys; cobalt alloys; ferromagnetic resonance; grain size; iron alloys; nanostructured materials; neodymium alloys; praseodymium alloys; soft magnetic materials; spin dynamics; NdPr-FeCo-B; alloys; exchange coupling; grain size; magnet sintering; nano-grains; nanocrystalline; single crystal; spin reorientation; Cobalt alloys; Couplings; Crystal microstructure; Grain size; Iron alloys; Magnetic properties; Neodymium; Soft magnetic materials; Strontium; Temperature; Exchange coupling; Nd–Fe–B; nanocrystalline; spin reorientation;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.829206
Filename :
1325678
Link To Document :
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