A New Experimental Setup to Measure Critical Current in Superconducting Strands Under Periodic Bending

被引:1
作者
Torre, A. [1 ]
Ciazynski, D. [1 ]
Gros, G. [1 ]
Cloez, H. [1 ]
Tena, M. [1 ]
Goncalves, R. [1 ]
机构
[1] Commissariat Energie Atom Cadarache, Cryomagnetism Grp, F-13108 St Paul Les Durance, France
关键词
Mechanical properties; Nb3Sn strands; strain dependence; test facility;
D O I
10.1109/TASC.2014.2376695
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Cable-in-conduit conductors made of Nb3Sn strands, as envisaged in high-field magnets for fusion applications (e.g., the International Thermonuclear Experimental Reactor ( ITER) project), have been shown to be prone to degradation of their current transport capability when subject to high electromagnetic forces ( coming from the combination of a high current and a high magnetic field), particularly under cyclic loading. Although some optimization of the cable layout can be envisaged to mitigate this effect, the knowledge of the electrical properties of Nb3Sn strands under periodic bending (simulating in-cable operating conditions) is generally considered a needed characteristic for magnet designers and users. The French Alternative Energies and Alternative Energies and Atomic Energy Commission (CEA)/Institute for Magnetic Fusion Research (IRFM) has developed a new Versailles Project on Advanced Materials and Standards (VAMAS)-like mandrel in order to test under relevant field and temperature conditions high-field superconducting strands subject to periodic bending provided by the strand deformation under its own Lorentz force. The advantage of this setup is its similarity with the setup used in critical current measurements on a VAMAS mandrel, which makes its implementation in existing facilities quite easy and rather cheap, as well as possible direct comparisons with unbent samples on a classical VAMAS mandrel. This paper presents the design layouts and carefully depicts the assembly of the different tested samples. The first test results obtained on Nb3Sn strands are given and discussed.
引用
收藏
页数:5
相关论文
共 11 条
[1]   Analytical formulae for computing the critical current of an Nb3Sn strand under bending [J].
Ciazynski, D. ;
Torre, A. .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2010, 23 (12)
[2]  
Decool P., 2002, STRESS STRAIN TESTIN
[3]  
Ekin J. W., 1980, P TOP C A15 SUP, P187
[4]   CURRENT TRANSFER IN MULTIFILAMENTARY SUPERCONDUCTORS .1. THEORY [J].
EKIN, JW .
JOURNAL OF APPLIED PHYSICS, 1978, 49 (06) :3406-3409
[5]   Scaling law for the strain dependence of the critical current in an advanced ITER Nb3Sn strand [J].
Ilyin, Y. ;
Nijhuis, A. ;
Krooshoop, E. .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2007, 20 (03) :186-191
[6]   Modelling of current distribution in Nb3Sn multifilamentary strands subjected to bending [J].
Miyoshi, Y. ;
Zhou, C. ;
van Lanen, E. P. A. ;
Dhalle, M. M. J. ;
Nijhuis, A. .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2012, 25 (05)
[7]   Critical current and strand stiffness of three types of Nb3Sn strand subjected to spatial periodic bending [J].
Nijhuis, A. ;
Ilyin, Y. ;
Wessel, W. A. J. ;
Abbas, W. .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2006, 19 (11) :1136-1145
[8]   Spatial periodic contact stress and critical current of a Nb3Sn strand measured in TARSIS [J].
Nijhuis, A. ;
Ilyin, Y. ;
Wessel, W. A. J. .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2006, 19 (11) :1089-1096
[9]   Critical current measurement with spatial periodic bending imposed by electromagnetic force on a standard test barrel with slots [J].
Nijhuis, A. ;
Wessel, W. A. J. ;
Ilyin, Y. ;
den Ouden, A. ;
ten Kate, H. H. J. .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2006, 77 (05)
[10]   Properties of helical springs used to measure the axial strain dependence of the critical current density in superconducting wires [J].
Taylor, DMJ ;
Hampshire, DP .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2005, 18 (03) :356-368