Ключевые слова: MgB2/Al, diffusion process, heat treatment, fabrication, wires monofilamentary, sheath, composites, Rutherford cables, X-ray tomography, homogeneity, mechanical properties, bending process, ac losses, critical caracteristics, critical current, magnetic field dependence, Jc/B curves, temperature dependence, tensile tests, strain effects, stress effects, experimental results
Ключевые слова: MgB2/Cu, MgB2/Cu-Ni, MgB2/Al, Rutherford cables, design parameters, PIT process, diffusion process, ac losses, eddy currents, interstrand contact resistances, critical current, current decay, magnetic field dependence, temperature dependence, resistive transition, frequency dependence, experimental results
Kovac P., Husek I., Melisek T., Kopera L., Kulich M., Kovac J., Rosova A., Balog M., Krizik P., Orovcik L.
Ключевые слова: MgB2, fabrication, diffusion process, wires monofilamentary, MgB2/Al, stabilizing layers, heat treatment, resistive transition, critical caracteristics, Jc/B curves, critical current density, temperature dependence, critical current, magnetic field dependence, current-voltage characteristics, quench, ac losses, microstructure, hardness, nanoscaled effects, grain structure, thermal stability, elastic behavior, resistance, experimental results, weight
Shintomi T., Takao T., Miyagi D., Tsuda M., Hamajima T., Makida Y., Munakata K., Kajiwara M., Asami T., Suzuki G.
Ключевые слова: SMES, cryogenic systems, hydrogen liquid, coils, MgB2/Al, ac losses, thermosyphon
Ключевые слова: MgB2/Al, tapes, ex-situ process, PIT process, Jc/B curves, fabrication, doping effect, critical caracteristics
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