DocumentCode
786581
Title
Phase segregation and interactions in Dy-substituted melt spun Nd-Fe-B alloys
Author
González, Jesús M. ; De Julián, César ; Cebollada, Federico ; Villas-Boas, Valquiria ; Missell, Frank P. ; Rossignol, Michel F. ; Givord, Dominique
Author_Institution
Inst. de Ciencia de Mater., CSIC, Madrid, Spain
Volume
31
Issue
6
fYear
1995
fDate
11/1/1995 12:00:00 AM
Firstpage
3683
Lastpage
3685
Abstract
We have analyzed in this work the effects of the partial and total substitution of Nd by Dy in melt spun Nd15Fe76B 9 alloys prepared by crystallization of amorphous precursors. Depending on the crystallization parameters, and particularly on the heating rate employed in order to reach the annealing temperature, samples with either one or two reversal steps in the demagnetization curve may be produced. The temperature of spin reorientation (SRT), measured by two different methods, was shown to be independent of the composition, close to 110 K, for samples with a Dy content between 20% and 80% of the total rare earth. This led us to suggest that two different hard phases with low Dy and Nd content, respectively, are present in the samples. The existence of either one or two reversal steps, depending on the heating rate employed, strongly supports the existence of exchange-driven collective demagnetization processes
Keywords
annealing; boron alloys; crystallisation; dysprosium alloys; exchange interactions (electron); ferromagnetic materials; iron alloys; magnetisation reversal; neodymium alloys; permanent magnets; segregation; spin dynamics; (NdDy)15Fe76B9; 110 K; Dy-substituted melt spun Nd-Fe-B alloys; amorphous precursors; annealing temperature; crystallization; demagnetization curve; exchange-driven collective demagnetization processes; heating rate; melt spun (DyNd)15Fe76B9; reversal steps; spin reorientation; Amorphous materials; Crystallization; Demagnetization; Grain size; Heating; Hysteresis; Magnetic analysis; Microstructure; Neodymium; Temperature dependence;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.489695
Filename
489695
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