DocumentCode :
1388994
Title :
Extensive Characterization of the 1 mm PIT {\\rm Nb}_{3}{\\rm Sn} Strand for the 13-T FRESCA2 Magnet
Author :
Bordini, B. ; Bottura, L. ; Mondonico, G. ; Oberli, L. ; Richter, D. ; Seeber, B. ; Senatore, C. ; Takala, E. ; Valentinis, D.
Author_Institution :
Technol. Dept., CERN, Geneva, Switzerland
Volume :
22
Issue :
3
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
6000304
Lastpage :
6000304
Abstract :
In the framework of the EuCARD program, CERN is participating in the development of a 13 T 100-mm-aperture dipole magnet to upgrade the superconducting cable test facility FRESCA at CERN. The conductor candidates for building this magnet are two 1-mm Nb3Sn strands: the Powder In Tube (PIT) produced by Bruker-EAS and the 132/169 RRP by Oxford Superconducting Technology (OST). Recently the PIT strand has been extensively characterized by CERN in collaboration with the University of Geneva (UniGe). The critical current dependence on the magnetic field and on the axial strain has been measured at different temperatures. Furthermore, the strand magnetization has been measured at different temperature using a vibrating sample magnetometer. Finally the magneto-thermal stability of this strand was studied by measuring the quench current between 0 T and 12 T at 1.9 K and 4.3 K. The experimental results are compared with an optimized scaling law for the critical current of Nb3Sn strands. In this paper the results obtained for the PIT strand are summarized and discussed.
Keywords :
cable testing; critical currents; educational institutions; magnetisation; niobium alloys; superconducting cables; superconducting magnets; tin alloys; type II superconductors; Bruker-EAS; CERN; EuCARD program; FRESCA2 magnet; Nb3Sn; OST; Oxford superconducting technology; PIT strand; UniGe; University of Geneva; aperture dipole magnet; axial strain; magnetic ήeld; magnetic flux density 0 T to 12 T; magnetic flux density 13 T; magneto-thermal stability; optimized scaling law; powder in tube; quench current; size 1 mm; size 100 mm; superconducting cable test facility; temperature 1.9 K; temperature 4.3 K; vibrating sample magnetometer; Critical current; Current measurement; Magnetic field measurement; Magnetization; Strain; Superconducting magnets; Temperature measurement; ${rm Nb}_{3}{rm Sn}$; Critical current; PIT; scaling law;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2011.2178217
Filename :
6095324
Link To Document :
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