Breschi M., Celentano G., Marzi G.D., Marchetti M., Savoldi L., Masi A., Castaldo A., Trotta A., Zanon F., Adibi S.A., Colombo G., Caponero M.A., Mazzotta C., Polimadei A.
Ключевые слова: sensors, quench detection, HTS, Bi2223, tapes, stacked blocks, cables, cooling technology, measurement setup, measurement technique, current-voltage characteristics
Ключевые слова: LTS, Nb3Sn, Rutherford cables, stability, loads, mechanical properties, stability, stress effects, crack formation, experimental 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
Eisterer M., Bruzzone P., Celentano G., Jirsa M., Laviano F., Nijhuis A., Muzzi L., Corato V., Rames M., Sedlak K., Duran I., Torsello D., Bykovskiy N., Anniballi G.
Wimbush S., Speller S., Grovenor C., Iliffe W., Reilly A., Adams K., Chislett-McDonald S., Harden F., Tufnail J., Nasr E.
Ключевые слова: presentation, HTS, REBCO, coated conductors, Tokamak, irradiation effects, ion irradiation, neutron irradiation
Ключевые слова: HTS, Bi2212, wires, cables, fabrication, mechanical treatment, deformation, critical current, modeling
Felice H., Hervieu B., Berriaud C., Touzery R., Thuillier T., Vallcorba R., Sinanna A., Rochepault E., Graffin P., Allain H., Genestier T., Stacchi F., Simon D., Antoni P.D., MINIER G., Cadoux T., Mora E.F., Bakon N., Guillo T., Kleymenov V., Trieste S.
Ключевые слова: ion sources, magnets, LTS, NbTi, coils solenoidal, coils racetrack, impregnation, design, design parameters, quench protection
Tanna V.L., Prasad U., Sonara D., Panchal R., Bairagi N., Nimavat H., Mahesuria G., Patel R., Panchal P., Christian D., Purwar G., Garg A., Raju a.
Ключевые слова: Tokamak, current leads, HTS, Bi2223, shunt, MgB2, prototype, design, design parameters, measurement setup, cooling technology, temperature distribution, test results
Ключевые слова: power equipment, power distribution system, SMES, design, dynamic operation, power active, filter, numerical analysis, modeling
Ключевые слова: LTS, NbTi, cables, microwave devices, filaments, wires, flexibility, fabrication
Rossi L., Sorbi M., Toral F., Lecrevisse T., Kirby G., Perini D., Calzolaio C., Statera M., Mariotto S., Munilla J., Prioli M., Matteis E.d., Barna D., Valente R.U., Ceruti G., Sorti S., Carloni A.
Ключевые слова: medical applications, accelerator magnets, magnets dipole, canted-cosine-theta coils, LTS, NbTi, design parameters, design, status
Ключевые слова: energy demand, renewable energy systems, SMES, review, SMES cables
Ключевые слова: aviation application, bus bar conductor, design, power distribution system, cryogenic systems, nitrogen liquid , modeling, HTS, REBCO, coated conductors, tapes, stacked blocks, Cu-based conductors, multilayered structures, prototype, current-voltage characteristics, self-field effect, critical current, fault detection, experimental results
Kovac P., Gomory F., Bruzek C.E., Lallouet N., Morandi A., Tropeano M., Spina T., Marian A., Hole S., Reiser W., Melaccio U., Iannaccone T., Roudaut J., Magnusson N.*10
Ключевые слова: power equipment, power distribution system, MgB2, wires, cables, design parameters, dc performance, hybrid systems, hydrogen liquid, test results
Wang G., Banerjee A., Chubar O., Sharma S., Musardo M., DePaola F., Lincoln F., Hubbard R., Faussete R., Hall C., Kitegi C.
Barzi E., Zlobin A.V., Turrioni D., Ivanyushenkov Y., Kesgin I., Fuerst J., Kasa M., Gluskin E., MacDonald S.
Ключевые слова: LTS, Nb3Sn, magnets, undulator, design parameters, quench energy, stability, dissipative properties, losses, hot spots, fabrication, test results
Ключевые слова: accelerator magnets, LTS, Nb3Sn, cables, quench propagation, quench protection, protective system, heater, modeling, numerical analysis
Todesco E., Russenschuck S., Prin H., Statera M., Petrone C., Mariotto S., Prioli M., Matteis E.d., Pentella M., Gautheron E.L., Dalane E.
Ключевые слова: LHC, luminosity, upgrade, correction coils, measurement technique, measurement setup, magnetometer, design, operational performance
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