Sattarov A., Labombard B., Michael P., Vieira R., Whyte D.G., Doody J., Granetz R., Hartwig Z.S., Mumgaard R., Riva N., Mouratidis T., Nash D., Watterson A., Golfinopolous T., Lammi C., Lane-Walsh S., Muncks J.P., Santoro F., Stillerman J., Uppalapati K., Wilcox S.
Ключевые слова: Tokamak, HTS, YBCO, tapes, stacked blocks, coils model, insulationless, coils toroidal, design, design parameters, modeling, test results, quench, SPARC program
Ключевые слова: power equipment, HTS, YBCO, coated conductors, cables, cryogenic systems, cooling technology, nitrogen liquid , cryocoolers, design, test results, measurement setup
Ключевые слова: undulator, HTS, coated conductors, design, winding techniques, test results
Granados X., Puig T., Calatroni S., Krkotic P., Perez F., Romanov A., O’Callaghan J., Pont M., Telles G., Gutiйrrez J., Lamas N., Korolkov I., Miquel R., Golm J., Dobrich B., Wuensch W.
Ключевые слова: presentation, HTS, REBCO, coated conductors, high field tests, surface resistance
Ключевые слова: HTS, REBCO, tapes, coils, heat treatment, gas treatments, vacuum treatment, degradation studies, critical current, joint resistances, n-value, experimental results
Kim H., Kim S., Kim H.M., Yoon Y.S., Kim J.H., Kim B., Jo Y., Lee S.H., Han J.H., Joo S., Quach H.L., Chae Y.S., Son J.
Ключевые слова: HTS, REBCO, tapes, coils, insulating medium, metal, powder processing, design parameters, contact characteristics, resistance, thermal conductivity, quench, stability, experimental results
Ключевые слова: rotating machines, motors synchronous, rotors, HTS, REBCO, coils, design parameters, winding techniques, magnets, insulationless, magnetic flux distribution, power losses
Zhukovsky A., Michael P.C., Labombard B., Vieira R., Beck W., Doody J., Golfinopoulos T., Johnson R., Wolf M.J., Hartwig Z., Estrada J., Fry V., Ihloff E., Voirin E., Nash D., Schweiger S., O’Shea C., Watterson A., Barnett R., Bartoszek L., Lane-Walsh S., Muncks J.P., Santoro F., Stillerman J., Wilcox S., Chamberlain S., Chavarria D., Pfeiffer A., Pierson S., Ravikumar D.K., Rowell M., Vidal C., Burke W., Byford W., Cote K., Dombrowski E., Doos R., Fulton M., Levine M., Metcalfe K.
Ключевые слова: facility, magnets, Tokamak, design parameters, coils toroidal, coils model, HTS, REBCO, tapes, current leads, VIPER cable, bus bar conductor, cryogenic systems, cooling technology, cryostat, control systems, vacuum structure, shields, irradiation effects, nitrogen liquid , helium supercritical, power supply
Ключевые слова: HTS, REBCO, Bi-based systems, MgB2, magnets, impregnation, cryogenic materials, thermal conductivity, review
Ключевые слова: space application, cryogenic systems, detector, cooling technology
Ключевые слова: HTS, REBCO, tapes, coils pancake, insulationless, discharge characteristics, quench, distribution, dynamic operation, temperature rise , modeling, numerical analysis
Ключевые слова: MRI magnets, HTS, REBCO, tapes, design, design parameters, portable unit, cryogenic systems, nitrogen solid, cooling technology
Kim C., Park C., Shi Y., Steurer M., Pamidi S., Jin Z., Graber L., Cheetham P., Saha P.C., Goldman J., German B.
Ключевые слова: aviation application, propulsion system, cryogenic systems, power electronics, HTS, cables, modeling
Ключевые слова: NMR magnet, high field magnets, portable unit, conduction cooled systems, design, design parameters, HTS, REBCO, coils, insulationless, cryogenic systems
Ключевые слова: HTS, REBCO, tapes, stacked blocks, twisting, comparison, CORC cables, ac losses, magnetization, experimental results
Wang H., Zhang Y., Haugan T., Zhang D., Huang J., Wu J., Sebastian M.A., Jian J., Gautam B., Ebbing C., Ogunjimi V., Panth M.
Ключевые слова: HTS, YBCO, substitution, doping effect, nanorods, thin films, multilayered structures, interfaces, X-ray diffraction, lattice parameter, pinning, temperature dependence, magnetic field dependence, fabrication, PLD process, substrate SrTiO3, critical caracteristics, Jc/B curves, pinning force, experimental results
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