Ambrosio G., Andreev N., Anerella M., Barzi E., Bingham B., Bocian D., Bossert R., Caspi S., Chlachidize G., Dietderich D., Escallier J., Felice H., Ferracin P., Ghosh A., Godeke A., Hafalia R., Hannaford R., Jochen G., Kashikhin V.V., Kim M.J., Kovach P., Lamm M., McInturff A., Muratore J., Nobrega F., Novitsky I., Orris D., Prebys E., Prestemon S., Sabbi G.L., Schmalzle J., Sylvester C., Tartaglia M., Turrioni D., Velev G., Wanderer P., Whitson G., Zlobin A.V.
Ключевые слова: accelerator magnets, LTS, Nb3Sn, magnets quadrupole, test results, gradient, quench current, high field magnets
Volpini G., Fabbricatore P., Musenich R., Gambardella U., Farinon S., Marabotto R., Bellomo G., Sorbi M., Alessandria F.
Ключевые слова: accelerator magnets, synchrotron, magnets dipole, design, coils model, design parameters, high field magnets
Scanlan R., Gupta R., Anerella M., Ganetis G., Ghosh A., Sampson W., Wanderer P., Shiroyanagi Y., Kirk H., Palmer R., Plate S., Brandt B., Cline D., Garren A., Kolonko J., Weggel R.J.
Ключевые слова: LHC, accelerator magnets, training effect, quench properties, numerical analysis, modeling, magnets dipole, high field magnets
Ключевые слова: accelerator magnets, coils solenoidal, cryostat, sensors, measurement technique, high field magnets
Ключевые слова: accelerator magnets, quench properties, irradiation effects, cryogenic pumps, design, high field magnets
Ключевые слова: HTS, accelerator magnets, design, YBCO, coated conductors, model small-scale, test results, cyclotron, high field magnets
Ключевые слова: presentation, HTS, magnets, magnetic properties, LTS, irreversibility fields, mechanical properties, strain effects, stress effects, review, critical caracteristics, critical current density, upper critical fields, YBCO, Bi2223, coils insert, induction heating, Jc/B curves, temperature dependence, rotating machines, generators, accelerator magnets, SMES, ITER, MRI magnets, Roebel conductors, power equipment, high field magnets
Wang L., Green M.A., Li D., Lau W., Wu H., Guo X.L., Xu F.Y., Liu X.K., Zheng S.X., Bradshaw T., Baynham D.E., Cobb J., Lau P., Yang S.Q., Virostek S.P., Zisman M.S., Pan H.
Ключевые слова: experimental devices, cryogenic systems, coils solenoidal, accelerator magnets, high field magnets
Godeke A., Hong S., Miao H., Meinesz M., Dietderich D.R., Huang Y., Cheng D., Parrell J., Prestemon S.O., Sabbi G.L., Acosta P., Mentink M.G.
Ключевые слова: accelerator magnets, voltage, quench, training effect, measurement technique, magnets quadrupole, LTS, high field magnets
Ключевые слова: accelerator magnets, coils, cycling, mechanical properties, magnets dipole, magnets quadrupole, LTS, NbTi, design, test results, high field magnets
Wang L., Green M.A., Li D., Lau W., Wu H., Guo X.L., Xu F.Y., Liu X.K., Zheng S.X., Bradshaw T., Baynham D.E., Cobb J., Lau P., Yang S.Q., Virostek S.P., Zisman M.S., Pan H.
Ключевые слова: coils solenoidal, LTS, NbTi, cooling technology, accelerator magnets, high field magnets
Shikov A.K., Fischer E., Pantsyrny V.I., Potanina L.V., Drobin V.M., Khodzhibagiyan H.G., Kovalenko A.D., Vladimirova N.M.
Ключевые слова: accelerator magnets, LTS, NbTi, cables, magnets dipole, pulsed operation, design parameters, ac losses, experimental results, power equipment, high field magnets, new
Starikov A., Fischer E., Khodzhibagiyan H., Kovalenko A., Schnizer P., Bychkov A., Gromov A., Shabunov A., Titova G.
Ключевые слова: LTS, NbTi, magnets dipole, accelerator magnets, modeling, high field magnets
Kikuchi A., Iijima Y., Tsuchiya K., Takao T., Banno N., Takeuchi T., Nimori S., Terashima A., Kuroda Y.
Ключевые слова: LTS, Nb3Sn, wires, fabrication, accelerator magnets, magnetic properties, magnetization, RHQT-process, high field magnets
Ключевые слова: HTS, cables, design parameters, accelerator magnets, ac losses, HTS, YBCO, coated conductors, measurement setup, power equipment, high field magnets
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