DocumentCode :
1482984
Title :
Growth kinetics in levitated and quenched Nd-Fe-B alloys
Author :
Hermann, Regina ; Bächer, Ingrid ; Matson, Douglas M. ; Löser, Wolfgang ; Schultz, Ludwig
Author_Institution :
Inst. for Solid State & Mater. Res., Dresden, Germany
Volume :
37
Issue :
3
fYear :
2001
fDate :
5/1/2001 12:00:00 AM
Firstpage :
1100
Lastpage :
1105
Abstract :
We investigated the growth kinetics and the effect of quenching conditions on rapid solidification of undercooled Nd-Fe-B melts with compositions near the Nd-2-Fe14-B (2-14-1) phase. We prepared melt drops of various undercooling levels (up to 300 K below the liquidus temperature) were prepared by the electromagnetic levitation method and subsequently quenched them onto chill substrates. We measured the solidification kinetics of the undercooled melts in situ using a high-resolution Si photodiode. In accordance with the nucleation theory, the properitectic γ-Fe phase nucleates at first during the undercooling process. There were two different solidification routes, with the observed route depending on the undercooling level of the levitated melt prior to quenching. The peritectic reaction is favored in melts with high undercooling levels prior to quenching. Low previous undercooling levels lead to primary solidification of the 2-14-1 phase on quenching. The thickness of the homogeneous 2-14-1 phase zone, grown directly at the substrate side, depends strongly on the undercooling level prior to solidification. We estimated the growth velocity of the 2-14-1 phase from temperature-time-characteristics to be of the order of 1 mm/s. These investigations give rise to improved understanding about the high sensitivity of the microstructure of Nd-Fe-B alloys on different rapid solidification procedures
Keywords :
boron alloys; crystal microstructure; drops; ferromagnetic materials; iron alloys; neodymium alloys; nucleation; permanent magnets; quenching (thermal); rapid solidification; undercooling; 2-14-1 phase; Nd2Fe14B; chill substrates; electromagnetic levitation method; growth kinetics; growth velocity; homogeneous 2-14-1 phase zone; levitated Nd-Fe-B alloys; liquidus temperature; melt drops; microstructure; nucleation theory; peritectic reaction; primary solidification; properitectic γ-Fe phase; quenched Nd-Fe-B alloys; quenching conditions; rapid solidification; solidification kinetics; solidification routes; temperature-time-characteristics; undercooled Nd-Fe-B melts; Electromagnetic measurements; Kinetic theory; Levitation; Magnetic properties; Microstructure; Neodymium; Permanent magnets; Photodiodes; Solid state circuits; Temperature;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.920483
Filename :
920483
Link To Document :
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