Ключевые слова: HTS, Bi2223/Ag, Bi2223/AgAu, tapes monofilamentary, fabrication, PIT process, phase formation, growth rate, X-ray diffraction, microstructure
Ключевые слова: MgB2, tapes monofilamentary, in-situ process, fabrication, critical caracteristics, critical current density, n-value, anisotropy, irreversibility fields, doping effect, temperature dependence, angular dependence, Jc/B curves, magnetic field dependence, microstructure, composition, experimental results
Ключевые слова: pnictides, tapes monofilamentary, composites, stainless steel, sheath, critical caracteristics, current-voltage characteristics, Jc/B curves, resistive transition, resistivity, temperature dependence, susceptibility, hardness, critical current density, distribution, experimental results
Ключевые слова: MgB2/Fe, PIT process, ex-situ process, tapes monofilamentary, fabrication, density, lattice parameter, X-ray diffraction, microstructure, magnetization, magnetization curves, temperature dependence, magnetic field dependence, critical caracteristics, Jc/B curves, pinning force, resistive transition, resistivity, experimental results
Iijima Y., Kiss T., Iwakuma M., Sato H., Fujita S., Igarashi M., Hanyu S., Naoe K., Kurihara C., Nakamura N., Daibo M., Muto S., Hirata W.
Ключевые слова: HTS, coated conductors, power equipment, cables, width, ac losses, modeling, numerical analysis, tapes monofilamentary, multilayered structures
Ключевые слова: MRI magnets, MgB2, tapes monofilamentary, persistent current mode, design, fabrication, test results, helium
Rakov D.N., Belotelova Y.N., Krinitsina T.P., Kuznetsova E.I., Blinova Y.V., Sudareva S.V., Degtyarev M.V., Romanov E.P.
Ключевые слова: MgB2/Cu/Nb, tapes monofilamentary, stability, composites, ex-situ process, PIT process, microstructure
Ключевые слова: MgB2/Cu, magnetization, ac losses, tapes monofilamentary, wires multifilamentary, experimental results
Kovac P., Holzapfel B., Melisek T., Nast R., Goldacker W., HaBler W., Rodig C., Schubert M., Kario A.
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