DocumentCode
967518
Title
Annealing effects on the anisotropy fields and coercivities of (Y1-x 2Cox )Co5
Author
Khan, W.I. ; Melville, D. ; Montenegro, J. F D
Author_Institution
IEEE TMAG
Volume
14
Issue
5
fYear
1978
fDate
9/1/1978 12:00:00 AM
Firstpage
674
Lastpage
675
Abstract
Anisotropy fields BA and intrinsic coercive fields Hc have been measured at room temperature for polycrystalline samples of the alloy series (Y1-x 2Cox )Co5 where
. Measurements were made on as-cast, argon-arc melted samples and on the same samples after annealing for 5 days at 950°C. The singular point detection technique was employed to measure anisotropy fields directly using pulsed fields up to 20 Tesla. For the as-cast samples the anisotropy field deereases monotonically at approximately 3% per 1% of Y substituted. For annealed samples the anisotropy field increases at approximately the same rate. The intrinsic coercivity shows the same trends although the increase of Hc with BA is non-linear for annealed samples. The results can-be generally accounted for in terms of the phase segregation in the annealed samples which has been observed using electron microprobe analysis.
. Measurements were made on as-cast, argon-arc melted samples and on the same samples after annealing for 5 days at 950°C. The singular point detection technique was employed to measure anisotropy fields directly using pulsed fields up to 20 Tesla. For the as-cast samples the anisotropy field deereases monotonically at approximately 3% per 1% of Y substituted. For annealed samples the anisotropy field increases at approximately the same rate. The intrinsic coercivity shows the same trends although the increase of HKeywords
Coercive forces; Magnetic anisotropy; Magnetic thermal factors; Permanent magnet materials; Anisotropic magnetoresistance; Annealing; Cobalt alloys; Coercive force; Crystallization; Force measurement; Heat treatment; Magnetic field measurement; Pulse measurements; Temperature measurement;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1978.1059947
Filename
1059947
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