DocumentCode
1321827
Title
Fully Epitaxial, Exchange Coupled SmCo
/Fe Multilayers With Energy Densities above 400 kJ/m
Author
Neu, V. ; Sawatzki, S. ; Kopte, M. ; Mickel, Ch ; Schultz, L.
Author_Institution
Inst. for Metallic Mater., IFW Dresden, Dresden, Germany
Volume
48
Issue
11
fYear
2012
Firstpage
3599
Lastpage
3602
Abstract
Exchange coupled hard/soft magnetic nanocomposites have long been in the interest of research for improving the energy density of the currently best hard magnetic materials such as Nd2 Fe14B (512 kJ/m3) or SmCo5 (230 kJ/m3). However, to compete with the energy density of a well textured single phase bulk magnet, the hard magnetic phase within the two-phase material should be sufficiently textured as well. Thus, only recently values of more than 300 kJ/m3, i.e., significantly above the theoretical hard phase limit of SmCo5, have been realized in fully epitaxial SmCo5/Fe/SmCo5 trilayers. Here we extend our work to fully epitaxial SmCo5 /Fe multilayers with reduced individual layer thicknesses of Fe and SmCo5. The rigid coupling of a large volume fraction of high moment soft phase to a hard magnetic Sm-Co phase leads to energy densities above 400 kJ/m3. Phase formation, epitaxial texture and magnetic properties are discussed for a series of multilayers of constant total thickness with respect to the number of introduced interfaces.
Keywords
cobalt alloys; iron; magnetic epitaxial layers; magnetic multilayers; nanocomposites; permanent magnets; samarium alloys; soft magnetic materials; SmCo5-Fe-SmCo5; energy density; epitaxial multilayer; epitaxial trilayer; exchange coupled multilayer; hard magnetic nanocomposite; single phase bulk magnet; soft magnetic nanocomposite; Epitaxial growth; Iron; Magnetic hysteresis; Magnetic multilayers; Nonhomogeneous media; Saturation magnetization; Soft magnetic materials; Energy density; Nd-Fe-B; Sm-Co; epitaxial multilayer; exchange-coupling;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2012.2195646
Filename
6332865
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