DocumentCode
979990
Title
Microstructure and superconductivity of some C15 laves phase alloys: V2 Hf, V2 Hf.51 Nb.49 and V2 Hf.51 Nb.21 Ti.28
Author
Khan, H.R. ; Schauer, W.
Author_Institution
Forschungsinstitut für Edelmetalle u. Metallchemie, W. Germany
Volume
17
Issue
1
fYear
1981
fDate
1/1/1981 12:00:00 AM
Firstpage
1017
Lastpage
1020
Abstract
Effect of different heat treatments on the lattice structure, microstructure and superconductivity of the C15 phase materials: V2 Hf, V2 Hf.51 Nb.49 and V2 Hf.51 Nb.21 Ti.28 are investigated. X-ray, optical microscopy and SEM investigations show the distribution of C15 phase filaments (10-25μ) in a bcc matrix for the V2 Hf.51 Nb.49 and V2 Hf.51 Nb.21 Ti.28 materials. The composition of the filaments is sensitive to heat treatment and the maximum ratio of V to Hf, Nb and Ti atoms is obtained after annealing the V2 Hf.51 Nb.21 Ti.28 at (1200°C;6h). Tc increases and the Vicker\´s hardness decreases after the substition of Nb and Ti for the Hf in V2 Hf compound. Maximum Tc and Hc2 (8K) values of 9.76K and 9.4 Tesla are also observed for the annealed (1200°C;6h) V2 Hf.51 Nb.21 Ti.28 alloy. Anomalies in (R vs. T) and (
vs. T) curves are observed for the homogeneous V2 Hf (annealed 900°C;70h) at ∼ 130K and 150K respectively, whereas multifilamentary annealed (900°C;70h) V2 Hf.51 Nb.49 and V2 Hf.51 Nb.21 Ti.28 do not show such anomalies. Tc values of annealed (900°C;70h) V2 Hf, V2 Hf.51 Nb.49 and V2 Hf.51 Nb.21 Ti.28 are 8.89K, 9.07 and 9.71K respectively. It is concluded that for these alloys the lattice instability is microstructure dependent and does not influence the superconducting parameters.
vs. T) curves are observed for the homogeneous VKeywords
Superconducting materials; Annealing; Hafnium; Heat treatment; Lattices; Microstructure; Niobium; Optical microscopy; Scanning electron microscopy; Superconducting materials; Superconductivity;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1981.1061095
Filename
1061095
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