The effects of refractory metals on the magnetic properties of alpha-Fe/R2Fe14B-type nanocomposites

Citation
Wc. Chang et al., The effects of refractory metals on the magnetic properties of alpha-Fe/R2Fe14B-type nanocomposites, IEEE MAGNET, 35(5), 1999, pp. 3265-3267
Citations number
7
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
IEEE TRANSACTIONS ON MAGNETICS
ISSN journal
00189464 → ACNP
Volume
35
Issue
5
Year of publication
1999
Part
2
Pages
3265 - 3267
Database
ISI
SICI code
0018-9464(199909)35:5<3265:TEORMO>2.0.ZU;2-Q
Abstract
The phase transformations and magnetic properties of rare earth lean and bo ron rich (Nd0.95La0.05)(x)Febal.M2B10.5 where x = 9.5 or 11 and M = Cr, Ti, Nb, V, Mo, Zr, Hf, Ta, Mn or W, melt spun ribbons have been investigated. Two magnetic phases, namely alpha-Fe and R2Fe14B, were found in ribbons stu died. A third magnetic phase, the R2Fe23B3, was also detected in (Nd0.95La0 .05)(9.5)Fe78M2B10.5 (M = Mo and Mn). Remanence (B-r) and coercivity (H-i(c )) values in the range of 8.0 to 9.1 kG and 9.5 to 18.9 kOe, respectively, have been achieved in nanocomposites with merely two magnetic phases. Among compositions studied, the Ti and W-substitutions were found to be most eff ective in increasing the B-r and H-i(c) respectively. For a fixed refractor y metal substitution, namely, M = Cr, Ti or Nb, an increase in the total ra re earth concentration resulted in nanocomposites of small grain sizes and a high volume fraction of the R2Fe14B phase. The combination of fine grain size and high volume fraction of R2Fe14B phase led to an increase in the H- i(c) and maximum energy product, (BH)(max) of nanocomposites studied. A B-r of 9.1 kG, H-i(c) of 16.7 kOe and (BH)(max) of 16.8 MGOe have been obtaine d on (Nd0.95La0.05)(11)Fe76.5Ti2B10.5.