Ключевые слова: ITER, cable-in-conduit conductor, LTS, magnets, modeling, friction, heat transfer
Ключевые слова: LTS, cable-in-conduit conductor, friction, porosity, forced flow, cooling technology, pressure drop, numerical analysis
Ключевые слова: HTS, levitation performance, friction, medical applications, modeling
Ключевые слова: HTS, bearing magnetic, flywheel energy storage systems, model small-scale, bulk, YBCO, disks, rotational speed, friction, experimental results, power equipment
Kim J., Yonekawa H., Lee S., Baek S., Kim K., Lee H., Chung W., Park K., Jeong S., Wang Q., Chu Y., Park S. H., Oh Y. K., Bak J. S.
Ключевые слова: Tokamak, coils solenoidal, LTS, Nb3Sn, cable-in-conduit conductor, experimental results, ac losses, friction, power equipment, high field magnets
Ключевые слова: HTS, Bi2223, tapes, coils, mechanical losses, friction, reinforcement, thermal expansion, experimental results, power equipment
Ключевые слова: bearing magnetic, HTS, YBCO, bulk, levitation performance, friction, vibration, space application
Ключевые слова: bearing magnetic, HTS, design, YBCO, bulk, friction, flywheel energy storage systems, experimental results, power equipment
Ключевые слова: bearing magnetic, HTS, YBCO, bulk, rings, stators, cryogenic systems, hysteresis, levitation performance, friction, thermal properties, design, economic analysis, rotating machines
Mito T., Takeo M., Sato S.(sato@ees.kyushu-u.ac.jp), Matsuo M., Kiss T., Takao T., Yamanaka A., Kashima T., Minamizato K.
Ключевые слова: LTS, NbTi, coils, pulsed operation, stability, winding tension, thermal expansion, thermal stress, quench current, friction, design, test results, power equipment, magnetic properties
Yamanaka A., Takao T.(takao@eco.ee.sophia.ac.jp), Kashiwazaki K., Ito T., Sasajima A.
Ключевые слова: coils, coil spacers, mechanical properties, experimental results, friction, stability, reinforcement, power equipment, magnetic properties
Ключевые слова: HTS, bearing magnetic, YBCO, bulk, friction, space application, test results
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