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Results 1 to 25 of 1275

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A new method for determining the magnetization of superconducting cables and its time dependenceHALEMEYER, M; SCHMÜSER, P; BRÜCK, H et al.IEEE transactions on applied superconductivity. 1993, Vol 3, Num 1, pp 168-171, issn 1051-8223, 2Conference Paper

Quench characteristics and current distribution of multi-strand AC superconducting cablesAMEMIYA, N; MURAI, J; HIGASHIHARA, K et al.IEEE transactions on applied superconductivity. 1993, Vol 3, Num 1, pp 156-159, issn 1051-8223, 2Conference Paper

Analysis of degradation in AC superconducting cablesTORII, S; AKITA, S; ISHIKAWA, R et al.IEEE transactions on applied superconductivity. 1993, Vol 3, Num 1, pp 126-129, issn 1051-8223, 2Conference Paper

Anomalous magnetization behaviour in fine filamentary NbTi superconducting wiresPOLAK, M; KREMPASKY, L; MAJOROS, M et al.IEEE transactions on applied superconductivity. 1993, Vol 3, Num 1, pp 150-152, issn 1051-8223, 2Conference Paper

High-temperature superconducting communications cablesGRODNEV, I. I.Telecommunications & radio engineering. 1990, Vol 45, Num 4, pp 33-38, issn 0040-2508Article

Current distribution in multi strand superconducting cables : experimental methods and resultsVYSOTSKY, V. S; FUNAKI, K; TAKEO, M et al.Physica. C. Superconductivity. 1998, Vol 310, Num 1-4, pp 351-357, issn 0921-4534Conference Paper

Stability measurements on cored cables in normal and superfluid heliumGHOSH, A. K; SAMPSON, W. B; KIM, S. W et al.Physica. C. Superconductivity. 1998, Vol 310, Num 1-4, pp 335-339, issn 0921-4534Conference Paper

The network approach to calculation of characteristic time constants of the flat two-layer superconducting cableAKHMETOV, A. A; IVANOV, S. S; SHCHEGOLEV, I. O et al.Physica. C. Superconductivity. 1998, Vol 310, Num 1-4, pp 382-386, issn 0921-4534Conference Paper

Current distribution calculation for a superconducting multi-layered power cableTOMINAKA, Toshiharu.Cryogenics (Guildford). 2011, Vol 51, Num 11-12, pp 630-634, issn 0011-2275, 5 p.Article

Investigation of the possibility of using UNK superconducting dipole magnets for producing rapid-cycling magnetic fieldsAGEEV, A. I; BOGDANOV, I. V; MORITZ, G et al.Atomic energy (New York, N.Y.). 2002, Vol 93, Num 6, pp 957-960, issn 1063-4258, 4 p.Conference Paper

Instabilities in multi-strand AC superconducting cables caused by longitudinal magnetic field with transverse magnetic fieldAMEMIYA, N; OHIZUMI, T; IKEDA, N et al.IEEE transactions on applied superconductivity. 1993, Vol 3, Num 1, pp 160-163, issn 1051-8223, 2Conference Paper

Superconducting communications cablesTelecommunications & radio engineering. 1990, Vol 45, Num 4, pp 32-33, issn 0040-2508Article

Increase in coupling-current losses of superconducting cables due to first-stage cabling. II: Optimum structure of solder-impregnated sub-cable with normal metal strandsFUNAKI, K; ICHIMARU, O; IWAKUMA, M et al.Cryogenics (Guildford). 1989, Vol 29, Num 4, pp 423-428, issn 0011-2275, 6 p.Article

High temperature superconducting cable field demonstration at Detroit EdisonSTEVE, Norman; NASSI, Marco; BECHIS, Massimo et al.Physica. C. Superconductivity and its applications. 2001, Vol 354, Num 1-4, pp 49-54Conference Paper

Coupling currents in Rutherford cables under time varying conditionsVERWEIJ, A. P; TEN KATE, H. H. J.IEEE transactions on applied superconductivity. 1993, Vol 3, Num 1, pp 146-149, issn 1051-8223, 2Conference Paper

Total AC loss measurements in a six strand Roebel cable carrying an AC current in an AC magnetic fieldZHENAN JIANG; KOMEDA, Takashi; AMEMIYA, Naoyuki et al.Superconductor science & technology (Print). 2013, Vol 26, Num 3, issn 0953-2048, 035014.1-035014.10Article

Quench propagation in the superconducting 6 kA flexible busbars of the LHCHERZOG, R; CALVI, M; SONNEMANN, F et al.Advances in cryogenic engineering. 2002, Vol 47, pp 583-590, issn 0065-2482, 8 p., aConference Paper

[Papers Presented at the Workshop on AC Losses]TSUKAMOTO, Osami.Cryogenics (Guildford). 2001, Vol 41, Num 2, issn 0011-2275, 72 p.Conference Proceedings

The consequence of self-field and non-uniform current distribution on short sample tests of superconducting cablesVERWEIJ, A. P.Advances in cryogenic engineering. 1998, Vol 44, pp 1051-1058, issn 0065-2482, BConference Paper

Influence of operating temperature and contact thermal resistance on normal zone propagation in a metal-sheathed high-Tc superconductor tapeCHYU, M. K; OBERLY, C. E.Cryogenics (Guildford). 1992, Vol 32, Num 5, pp 519-526, issn 0011-2275Conference Paper

Design parameters influencing non-uniform current distributions in superconducting multi-stage stranded cablesSEO, K; HASEGAWA, M; MORITA, M et al.Physica. C. Superconductivity. 1998, Vol 310, Num 1-4, pp 358-366, issn 0921-4534Conference Paper

Study on cause of quenching at the joint between multifilamentary superconducting cable and normal conducting cable using 3-D femTAKAHASHI, N; NAKATA, T; FUJII, Y et al.IEEE transactions on magnetics. 1992, Vol 28, Num 5, pp 2826-2828, issn 0018-9464, 2Conference Paper

High strength, high conductivity Cu-Nb based conductors with nanoscaled microstructureSHIKOV, A; PANTSYRNYI, V; VOROBIEVA, A et al.Physica. C. Superconductivity and its applications. 2001, Vol 354, Num 1-4, pp 410-414Conference Paper

On designing and building equipement for a wide-scale production of SC transposed cable for unk : Twelfth international conference on magnet technology, Leningrad, June 23-28, 1991BORISOV, E. R; SURKOV, A. N.IEEE transactions on magnetics. 1992, Vol 28, Num 1, pp 686-688, issn 0018-9464Conference Paper

Development of fine filament NbTi superconducting strands for magnet systems of fusion reactorsVEDERNIKOV, G. P; SHIKOV, A. K; POTANINA, L. V et al.Physica. C. Superconductivity and its applications. 2001, Vol 354, Num 1-4, pp 420-423Conference Paper

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