DocumentCode
1052810
Title
The structure of Co-Cu-Fe-Ce permanent magnets
Author
Leamy, W.J. ; Green, Martin L.
Author_Institution
Bell Laboratories, Murray Hill, NJ, USA
Volume
9
Issue
3
fYear
1973
fDate
9/1/1973 12:00:00 AM
Firstpage
205
Lastpage
209
Abstract
The precipitates responsible for magnetic age hardening of a Co3.8 Cu0.9 Fe0.5 Ce alloy have been directly observed by transmission electron microscopy. The precipitates are coherent, plate shaped disks which possess the rhombohedral Co17 Ce2 structure. They form in a [001] plate normal orientation and cluster in staggered rows at
from the [001] axis. The development of precipitate microstructure has been examined in quenched, optimally aged, and overaged alloys. Direct evidence for interaction between the precipitate particles and magnetic domain walls has also been obtained. Among the recently developed Co5 R based permanent magnets, the Cu containing alloys developed by Nesbitt et al. are of particular interest. These alloys are age hardenable; i.e., their magnetic properties may be improved and controlled by heat treatment. Previous work has revealed that their high coercivities may be attributed to the pinning of domain walls rather than to the nucleation of reverse domains. This report contains a description of some results obtained during an investigation of the alloy structures by transmission electron microscopy. We present direct evidence for the existence of coherent precipitates as well as for the existence of a pinning interaction between magnetic domain walls and the precipitate particles.
from the [001] axis. The development of precipitate microstructure has been examined in quenched, optimally aged, and overaged alloys. Direct evidence for interaction between the precipitate particles and magnetic domain walls has also been obtained. Among the recently developed CoKeywords
Cerium-cobalt-iron-copper alloys; Magnetic domain walls; Aging; Aluminum alloys; Cobalt alloys; Copper alloys; Iron alloys; Magnetic domain walls; Magnetic force microscopy; Microstructure; Permanent magnets; Transmission electron microscopy;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1973.1067642
Filename
1067642
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