Ключевые слова: HTS, Bi2223/Ag, tapes, design parameters, mechanical properties, stress effects, compression, transverse stress, critical current, modeling, numerical analysis
Ключевые слова: detector, magnets, design, design parameters, HTS, REBCO, tapes, stabilizing layers, Al, alloys, fabrication, cryogenic systems, nitrogen liquid , helium gas, helium liquid, critical current, test results, comparison, numerical analysis
Ключевые слова: joints superconducting , HTS, DI-Bi2223, tapes, grain alignment, critical caracteristics, critical current, angular dependence, experimental results
Ключевые слова: bulk, cylinders, current-voltage characteristics, critical current, current distribution, modeling, numerical analysis
Dhalle M., Chaud X., Senatore C., Song J., Fazilleau P., Debray F., Lecrevisse T., Herrmannsdorfer T., Smara A., Paillot K.
Ключевые слова: SMES, magnets, HTS, REBCO, coated conductors, tapes, stacked blocks, cables, design, fabrication, bending radius, critical current
Ключевые слова: pnictides, wires multifilamentary, fabrication, PIT process, hot isostatic pressing, mechanical treatment, grain structure, critical current, current-voltage characteristics, magnetic field dependence, transport currents, n-value, susceptibility, magnetization, resistive transition, upper critical fields, irreversibility fields, X-ray diffraction, microstructure, experimental results
Ключевые слова: HTS, Bi2212, wires, cables, fabrication, mechanical treatment, deformation, critical current, modeling
Rupich M.W., Strickland N.M., Wimbush S.C., Long N.J., Kennedy J., Kluth P., Soman A.A., Notthoff C., Leveneur J.
Ключевые слова: HTS, REBCO, tapes, coils, heat treatment, gas treatments, vacuum treatment, degradation studies, critical current, joint resistances, n-value, experimental results
Ключевые слова: HTS, REBCO, coated conductors, tapes, coils, cooling technology, damage mechanisms, critical current, impregnation, mechanical properties, thickness dependence, modeling
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