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Electrical Behavior and Current Transfer Length of Fe- and Cu-Sheathed MgB$_2$Superconducting Single-Core Wires

机译:铁和铜包覆的MgB $ _ 2 $ 超导单芯电线

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摘要

Estimation of the current transfer length (CTL) and the electric field of single-core superconducting wires for various materials having different cross-sectional compositions of superconducting core:barrier:sheath material are theoretically studied employing an analytical method. The results indicate that Fe-sheathed single-core superconducting wires can be preferable as compared to Cu-sheathed single-core wires having identical geometry. Among the studied wire geometries, the least CTL value of 0.374 and 0.629 mm for MgB$_{2}$:Ti:Fe and MgB$_{2}$:Monel:Fe wires, respectively, suggest that single-core superconducting wire fabricated with these geometrical combination can be operational with the lowest electrical dissipation. Furthermore, this technique can also be extended to study electrical properties of various combinations of materials that are used for the fabrication of single-core superconducting wires.
机译:理论上,采用一种分析方法,研究了具有不同截面组成的不同材料的单芯超导线的电流传输长度(CTL)和电场,这些材料具有不同的超导芯:势垒:护套材料。结果表明,与具有相同几何形状的铜护套单芯线相比,铁护套单芯超导线可以是优选的。在所研究的导线几何形状中,MgB n $ _ {2} $ n:Ti:Fe和MgB n $ _ {2} $ n:Monel:Fe导线,建议用这些几何形状组合制造的单芯超导线可以以最低的功耗运行。此外,该技术还可以扩展到研究用于制造单芯超导线材的各种材料组合的电性能。

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