DocumentCode :
1074013
Title :
Stability Measurements in Multifilamentary MgB2 Tapes
Author :
Gambardella, U. ; Saggese, A. ; Sessa, P. ; Guarino, A. ; Pace, S. ; Masullo, G. ; Matrone, A. ; Petrillo, E. ; Quarantiello, R.
Author_Institution :
INFN-Frascati Nat. Lab., Frascati
Volume :
17
Issue :
2
fYear :
2007
fDate :
6/1/2007 12:00:00 AM
Firstpage :
2937
Lastpage :
2940
Abstract :
We have analyzed the behavior of a 10 cm long straight piece of copper stabilized multifilamentary tape, manufactured by Columbus Superconductors, in a nearly adiabatic condition. The tape was biased at different current values as a function of either the temperature or the induced heat disturbances at fixed temperatures. From the analyses of the voltage increase, recorded from voltage taps placed at known positions, we estimated the highest temperatures which give rise to a quench of the tape at constant values of the current bias. We also measured the minimum energy triggering the quench at fixed values of current bias and temperature. The voltage taps have also been used for homogeneity check of the physical properties which rule the thermal runaway in the tape. The voltage-versus-time curves in different sections of the tape also provide information about the quench propagation speed as a function of the hot spot energy and the temperature. Due to the composite nature of the tape, made of nickel, iron, copper, and , to perform simple FEA computation we modeled the tape with a one dimensional single wire with averaged value of the physical quantities involved in the Joule heat generation and thermal conductivity.
Keywords :
finite element analysis; magnesium compounds; quenching (thermal); superconducting tapes; thermal conductivity; thermal stability; type II superconductors; 1D single wire; Columbus Superconductors; Joule heat generation; MgB2; copper stabilized multifilamentary tape; current bias; finite element analysis; hot spot energy; induced heat disturbance; minimum energy triggering; quench propagation speed; size 10 cm; thermal conductivity; voltage taps; voltage-versus-time curve; wire stability; Copper; Current measurement; Energy measurement; Manufacturing; Multifilamentary superconductors; Nickel; Stability; Temperature; Thermal conductivity; Voltage; ${rm MgB}_{2}$ tape; Heat disturbance; propagation velocity; wire stability;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2007.900009
Filename :
4278096
Link To Document :
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