DocumentCode
1138303
Title
Performance of ITER (EU-TFPRO-2)
Strands Under Spatial Periodic Bending, Axial Strain and Contact Stress
Author
Nijhuis, A. ; Ilyin, Y. ; Abbas, W. ; Wessel, W.A.J. ; Krooshoop, H.J.G.
Author_Institution
Low Temp. Div., Twente Univ., Enschede
Volume
18
Issue
2
fYear
2008
fDate
6/1/2008 12:00:00 AM
Firstpage
1059
Lastpage
1062
Abstract
The Nb3Sn cable in conduit conductors (CICCs) for the International Thermonuclear Experimental Reactor (ITER) show a significant degradation in their performance with increasing electromagnetic load. Knowledge of the influence of bending and contact stress on the critical current (Ic) of the Nb3Sn strands is essential for the understanding of this reduction in performance. We have measured the Ic of Nb3Sn strands in the TARSIS facility, when subjected to spatial periodic bending using bending wavelengths from 5 to 10 mm, periodic contact stress and uni-axial strain on two strand types, manufactured by OST. These strands were used for the cables of the European TFPRO-2 sample tested in SULTAN. A priori predictions with the TEMLOP model led to the discovery that the severe Lorentz force response and degradation can be completely improved by increasing the pitch length in subsequent initial cabling stages. The TFPRO-2 /OST-II conductor, especially designed to examine this prediction, verified this significant enhancement. TEMLOP directly uses data describing the behavior of single strands under uni-axial stress and strain, periodic bending and contact loads. Here we give an overview of the TARSIS strand testing results.
Keywords
Tokamak devices; bending; critical currents; fusion reactor design; fusion reactor materials; materials testing; niobium alloys; stress-strain relations; superconducting cables; superconducting coils; superconducting materials; tin alloys; ITER; International Thermonuclear Experimental Reactor; Lorentz force; Nb3Sn; SULTAN; TARSIS strand testing; TEMLOP model; TFPRO-2-OST-II conductor; axial strain; cable in conduit conductors; contact stress; critical current; spatial periodic bending; superconductor coil strands design; ${rm Nb}_{3}{rm Sn}$ ; Bending strain; contact stress; degradation; superconductors;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2008.922448
Filename
4494476
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