DocumentCode :
1412593
Title :
Pinning Properties of Commercial Nb-Ti Wires Described by a 2-Components Model
Author :
Muzzi, Luigi ; De Marzi, Gianluca ; Zignani, Chiarasole Fiamozzi ; Affinito, Luigi ; Napolitano, Mathieu ; Viola, Rosario ; Domínguez, César Octavio ; Bottura, Luca ; Le Naour, Sandrine ; Richter, David ; Della Corte, Antonio
Author_Institution :
Frascati Res. Center, ENEA, Frascati, Italy
Volume :
20
Issue :
3
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1496
Lastpage :
1499
Abstract :
We report on the magnetic and transport characterization of different NbTi commercial strands, carried out at variable temperature and magnetic field. From the critical current densities extracted from transport measurements and magnetization cycles we were able to calculate the normalized bulk pinning forces. The curves show good temperature scaling throughout the explored temperature range, and the reduced pinning force can be described by a simple two-components model system. The extension of the 2-components description of the pinning force to an expression for the critical current density gives a very good agreement with experimental measurements over the whole explored B, T range. The model works for all investigated samples, which are different in size, Cu:nonCu ratios, filament diameters and layouts. These results suggest that pinning mechanisms in conventional NbTi strands should be revised, since Nb-Ti composition gradients and grain boundaries seems to play a not negligible role.
Keywords :
critical current density (superconductivity); flux pinning; magnetisation; niobium alloys; superconducting materials; titanium alloys; type II superconductors; wires; 2-component model; Nb-Ti; critical current density; magnetic characterization; magnetization cycles; pinning property; transport characterization; two-components model system; Critical current density; magnetic characterization; superconducting NbTi strands; transport measurements;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2009.2039124
Filename :
5409520
Link To Document :
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