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Strategic coating of NdFeB magnets with Dy to improve the coercivity of permanent magnets
Author(s) -
Huseyin Ucar,
David Parker,
Ikenna C. Nlebedim,
R. W. McCallum,
S. McCall,
M. Paranthaman
Publication year - 2015
Publication title -
advances in materials research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.403
H-Index - 8
eISSN - 2234-179X
pISSN - 2234-0912
DOI - 10.12989/amr.2015.4.4.227
Subject(s) - neodymium magnet , magnet , materials science , dysprosium , coercivity , demagnetizing field , composite material , metallurgy , nuclear magnetic resonance , mechanical engineering , magnetization , condensed matter physics , magnetic field , physics , quantum mechanics , engineering , nuclear physics
Here, we present a method, supported by theoretical analysis, for optimizing the usage of the critical rare earth element dysprosium in Nd2Fe14B (NdFeB)-based permanent magnets. In this method, we use Dy selectively in locations such as magnet edges and faces, where demagnetization factors are most significant, rather than uniformly throughout the bulk sample. A 200 nm thick Dy film was sputtered onto commercial N-38, NdFeB magnets with a thickness of 3 mm and post-annealed at temperatures from 600 - 700 C. Magnets displayed enhanced coercivities after post-annealing. Furthermore, our experimental results indicate as large as a 5 percent increase in the energy product of NdFeB magnets, achieved for a total Dy weight percentage of 0.06 percent, much less than that used in commercial grade Dy-NdFeB magnets. Finally, by assuming all Dy diffused into NdFeB magnets, the improvement in energy product corresponds to a saving of over 1% Dy (critical element). Magnets manufactured using this technique will therefore be higher performing and significantly less expensive than those made presently.

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