DocumentCode :
1763955
Title :
Monitoring of the Thermal Strain Distribution in CICCs During the Cyclic Loading Tests in SULTAN
Author :
Calzolaio, Ciro ; Bruzzone, Pierluigi ; Stepanov, Boris
Author_Institution :
EPFL-CRPP, Fusion Technol., Villigen, Switzerland
Volume :
23
Issue :
3
fYear :
2013
fDate :
41426
Firstpage :
4200404
Lastpage :
4200404
Abstract :
A technique to measure in situ the behavior of the magnetic susceptibility vs. temperature, χ(T), for a cable-in-conduit-conductor (CICC) in the SULTAN test facility has been developed. The same kind of measurements are performed for the corresponding free standing filaments used for the cable manufacturing. The comparison of both the χ(T) curves allows at first to measure the critical temperature (Tc) distribution in the CICC cross-section and then to infer from that the corresponding thermal strain distribution (εth). The εth plays an important role in the monitoring of the performance degradation that a CICC experiences when it undergoes an electromagnetic cyclic load, allowing also to discriminate between reversible and irreversible degradation. A broadening of the strain distribution with the number of cycles is visible. The strain distribution was measured for both toroidal field samples and central solenoid samples. In both cases the εth distributions have peaks at negative strain but the toroidal field sample distributions show a larger percentage of filaments in the tensile region.
Keywords :
conductors (electric); magnetic susceptibility; superconducting cables; superconducting device testing; superconducting transition temperature; temperature distribution; CICC; SULTAN test facility; cable manufacturing; cable-in-conduit-conductor; central solenoid samples; critical temperature; cyclic loading tests; electromagnetic cyclic load; irreversible degradation; magnetic susceptibility; performance degradation; thermal strain distribution; toroidal field sample distributions; Bars; Coils; Niobium-tin; Power cables; Strain; Strain measurement; Temperature measurement; CICC; critical temperature; degradation; magnetic susceptibility; thermal strain;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2012.2235492
Filename :
6389720
Link To Document :
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