Ключевые слова: gravity, measurement setup, design, magnetic force, coils, spheres, gradient, design, measurement technique, levitation performance, suspension
Huang X., Badcock R.A., Ludbrook B.M., Davies M., Salazar E.E., Moseley D., Haneef S.M., Gonzales J., Duke O.
Ключевые слова: HTS, fusion magnets, sensors, fibers, optical properties, quench detection, test results
Ключевые слова: gravity, sensors, joints superconducting , Nb, electron beam evaporation, welding, joint resistances, fabrication
Ключевые слова: gravity, measurement technique, weight, coils, spheres, temperature dependence, levitation performance, penetration depth, numerical analysis, modeling
Jin F., Wang Y., Wang L., Li Y., Zhang L., Huang Y., Huang X., Dai Y., Bai X., Zhao L., Han X., Gao H., Xu S., Cheng Q., Zhang Q., Gu G., Zhou X., Zhou X., Wu Q., Wang N., Dong T., Liao L., Yue M.
Ключевые слова: HTS, Bi2212, bulk, tapes, environmental impact, degradation studies, Raman spectroscopy, resistivity, temperature dependence, microstructure
Ключевые слова: gravity, sensors, spheres, levitation performance, magnetic shielding, modeling, numerical analysis, experimental results
Ключевые слова: HTS, REBCO, coated conductors, coils racetrack, modeling, ac losses, numerical analysis
Ключевые слова: Maglev system, HTS, magnets, design parameters, electromagnetic forces, levitation performance, modeling, numerical analysis
Ключевые слова: cyclotron, proton irradiation, medical applications, surface
Ключевые слова: HTS, YBCO, coated conductors, coils racetrack, laminations, winding techniques, design parameters, ac losses, numerical analysis, experimental results
Ключевые слова: rotating machines, generators, HTS, YBCO, coated conductors, coils, design parameters, ac losses, modeling, numerical analysis
Watanabe K., Huang X., Vinokur V.M., Yan H., Gu G., Chu Y.S., Taniguchi T., Yoo H., Zhong R., Campi G., Poccia N., Zhao S.Y., Mazzoli C., Kim P.
Ключевые слова: experimental results, Bi2212, heterostructures, nanoscaled effects, X-ray diffraction, synchrotron
Mitchell N., Lee S., Yang Y., Bauer P., Taylor T., Heller R., Yamada S., Li J., Zhou T., Devred A., Ichihara T., Song Y., Huang X., Liu C., Liu C., Ballarino A., Ding K., Lu K., Gung C.Y., Spina T., Niu E., Han Q., Ran Q., Dong Y., Du Q.
Ключевые слова: ITER, current leads, HTS, coils toroidal, coils poloidal field, central coils, operational performance, design, Bi2223, tapes, prototype
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