Ключевые слова: LHC, LTS, Nb3Sn, Rutherford cables, interstrand contact resistances, NbTi, experimental results
Chiarelli S., Celentano G., Fabbri F., Augieri A., Muzzi L., Corte A., Marzi G.D., Bagrets N., Anemona A., Tomassetti G.
Ключевые слова: presentation, HTS, cable-in-conduit conductor, coated conductors, stacked blocks, cooling technology, fabrication, modeling, critical caracteristics, critical current, angular dependence, flux density, high current processing, current-voltage characteristics, n-value, mechanical properties, interstrand contact resistances, joints
Koizumi N., Nunoya Y., Miyagi D., Tsuda M., Hamajima T., Yagai T., Takahata K., Obana T., Nakazawa S., Arai D., Morimura T.
Ключевые слова: LTS, cable-in-conduit conductor, ac losses, interstrand contact resistances, modeling, coils poloidal field, ITER, NbTi, twist-pitch, experimental results
Ключевые слова: ITER, cable-in-conduit conductor, LTS, Nb3Sn, ac losses, interstrand contact resistances, mechanical properties, stiffness, experimental results
Ключевые слова: cable-in-conduit conductor, numerical analysis, ac losses, strands, ITER, coils poloidal field, modeling, NbTi, twist-pitch, interstrand contact resistances, LTS
Ключевые слова: LTS, NbTi, Nb3Sn, strands, internal tin method, resistivity, measurement technique, interstrand contact resistances
Ключевые слова: LTS, Nb3Sn, Rutherford cables, interstrand contact resistances, ac losses, magnetization, calorimetric method, experimental results
Ключевые слова: LTS, cable-in-conduit conductor, Nb3Sn, fabrication, measurement technique, current distribution, homogeneity, current-voltage characteristics, critical caracteristics, interstrand contact resistances, joints, modeling, voltage–temperature characteristics, experimental results, uniformity
Ключевые слова: ITER, cable-in-conduit conductor, termination, interstrand contact resistances, LTS, Nb3Sn, test results, SULTAN
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