Takayasu M., Chiesa L., Zhang B., Zhao Z., Desai A., Moore P., Isaacson B., Chau S., Emerling M., White R., D’Alessandro J., Alquaddoomi F., Doolittle O., Beckett A., Blackman A., Ensslin E., Baris R.
Iwamoto A., Tsuda M., Shirai Y., Shiotsu M., Yagai T., Kobayashi H., Ohya M., Imagawa S., Matsumoto G., Hamaguchi S., Nagasaki Y., Maeda Y., Kawasaki R., Matsumoto F., Oya H.
Ключевые слова: HTS, Bi2223, tapes, coils, design parameters, fabrication, cooling technology, hydrogen liquid, thermal runaway, overcurrent, test results
Iwamoto A., Tsuda M., Shirai Y., Shiotsu M., Yagai T., Kobayashi H., Imagawa S., Hamaguchi S., Nagasaki Y., Kawasaki R., Ohya H., Matsumoto F.
Ключевые слова: HTS, DI-Bi2223, tapes, critical caracteristics, critical current, magnetic field dependence, magnets, coils pancake, design, design parameters, fabrication, test results, cooling technology, nitrogen liquid , hydrogen liquid, thermal runaway, cryostability, current-voltage characteristics, heat generation
Ключевые слова: HTS, YBCO, coated conductors, tapes, stacked blocks, ac losses, flux density, frequency dependence, measurement technique, experimental results
Ключевые слова: high field magnets, HTS, REBCO, coated conductors, tapes, stacked blocks, twisting, cables, current leads, loads, mechanical properties, transverse stress, cycling, stress distribution, modeling, numerical analysis
Ключевые слова: HTS, REBCO, tapes, cable-in-conduit conductor, cables, cooling technology, helium gas, quench detection, sensors, quench propagation, measurement technique
Takayasu M., Chiesa L., Zhao Z., Desai A., Moore P., Owen C., Anilus M., Chau S., Emerling M., White R.
Shirai Y., Shiotsu M., Tanaka T., Kobayashi H., Hara S., Naruo Y., Inatani Y., Nonaka S., Yoshinaga S., Matsumoto T., Iwami Y., Ishii M., Kawasaki R.
Ключевые слова: rotating machines, HTS, generators, rotors, cryogenic systems, cooling technology, hydrogen liquid, test results, safety, rotational speed
Ключевые слова: HTS, REBCO, coated conductors, cable-in-conduit conductor, quench detection, sensors, acoustic emission, measurement setup, fusion magnets
Tanaka H., Shirai Y., Shiotsu M., Kobayashi H., Suzuki T., Hara S., Naruo Y., Inatani Y., Nonaka S., Kodama M., Matsumoto T., Iwami Y.
Zhou L., Takayasu M., Radovinsky A., Bajko M., Michael P.C., Badcock R.A., Golfinopoulos T., Hartwig Z.S., Sorbom B.N., Beck W.K., Irby J.H., Kuznetsov S., Castaldo B., Davies M., Pfeiffer A.T., Pierson S.Z., Rowell M.D., Salazar E.E., Segal M., Stahle P.W., Toland T.L., Vieira R.F., Craighill C.L., Estrada J., Fry V., Hubbard A.E., Lammi C.J., Mouratidis T., Murray R.A.
Tanaka H., Shirai Y., Shiotsu M., Kobayashi H., Suzuki T., Naruo Y., Inatani Y., Nonaka S., Kodama M., Matsumoto T., Fujita K., Iwami Y.
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