DocumentCode :
1532371
Title :
Structure and magnetic properties of La-Co-M alloys with nominal composition of LaCo7-xMx (M=Zr, or Ti, x=0-0.6)
Author :
Huang, M.Q. ; Simizu, S. ; Zande, B. ; Chandhok, V.K. ; Obermyer, R. ; Wallace, W.E. ; Sankar, S.G.
Author_Institution :
Adv. Mater. Corp., Pittsburgh, PA, USA
Volume :
37
Issue :
4
fYear :
2001
fDate :
7/1/2001 12:00:00 AM
Firstpage :
2537
Lastpage :
2539
Abstract :
Alloys with nominal composition LaCo7-xMx (M=Zr, or Ti and x=0-0.6) were synthesized and characterized in the temperature range of 10-1273 K in fields up to 5 T. The experimental results show that the effects of Zr or Ti doping on the structure, phases present and magnetic properties of the LaCo7-xMx alloys are different. In the case of Zr, for as-cast alloys, besides the 1-5 (CaCu5) and 1-13 (NaZn13) phases, a new phase with Tc=1073~1173 K was detected. This new phase is probably in a hexagonal structure and shows a uniaxial anisotropy. After annealing at 1273 K, the 1-5 phase increases and almost dominates the materials when x=0.3~0.5. It shows a strong uniaxial anisotropy with HA=95~135 kOe at both 300 K and 10 K. The Tc´s are ~838 K, which is almost the same as that of LaCo5. In the case of Ti, besides the 1-5 and 1-13 phases, another new phase with Th 2Zn17 structure was formed by Ti doping and almost dominates the materials when x=0.3~0.6. This phase exhibits a uniaxial anisotropy with HA~25 kOe at both 300 K and 10 K. Tc decreases from 998 K to 901 K when the Ti content increases from x=0.25 to x=0.6
Keywords :
Curie temperature; annealing; cobalt alloys; crystal structure; ferromagnetic materials; lanthanum alloys; magnetic anisotropy; titanium alloys; zirconium alloys; 10 to 1273 K; 5 T; Curie temperature; La(CoTi)7; La(CoZr)7; La-Co-M alloy; LaCo7-xTix; LaCo7-xZrx; Ti doping; Zr doping; annealing; hard magnetic properties; phase structure; uniaxial anisotropy; Anisotropic magnetoresistance; Annealing; Doping; Magnetic materials; Magnetic properties; Powders; Temperature distribution; Titanium alloys; Zinc; Zirconium;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.951227
Filename :
951227
Link To Document :
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