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Ultra-lightweight superconducting wire based on Mg B Ti and Al

机译:基于MgBTi和Al的超轻型超导线

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摘要

Actually, MgB2 is the lightest superconducting compound. Its connection with lightweight metals like Ti (as barrier) and Al (as outer sheath) would result in a superconducting wire with the minimal mass. However, pure Al is mechanically soft metal to be used in drawn or rolled composite wires, especially if applied for the outer sheath, where it cannot provide the required densification of the boron powder inside. This study reports on a lightweight MgB2 wire sheathed with aluminum stabilized by nano-sized γ-Al2O3 particles (named HITEMAL) and protected against the reaction with magnesium by Ti diffusion barrier. Electrical and mechanical properties of single-core MgB2/Ti/HITEMAL wire made by internal magnesium diffusion (IMD) into boron were studied at low temperatures. It was found that the ultra-lightweight MgB2 wire exhibited high critical current densities and also tolerances to mechanical stress. This predetermines the potential use of such lightweight superconducting wires for aviation and space applications, and for powerful offshore wind generators, where reducing the mass of the system is required.
机译:实际上,MgB2是最轻的超导化合物。它与诸如Ti(作为阻挡层)和Al(作为外部护套)之类的轻质金属的连接将产生质量最小的超导线。但是,纯铝是机械柔软的金属,可用于拉制或轧制复合线材,特别是如果用于外部护套,则无法提供所需的内部硼粉致密化。这项研究报道了一种轻质MgB2线,该线由铝包裹,并由纳米级γ-Al2O3颗粒(称为HITEMAL)稳定,并通过Ti扩散阻挡层防止与镁反应。在低温下研究了通过内部镁扩散(IMD)形成的硼制造的单芯MgB2 / Ti / HITEMAL线的电气和机械性能。已经发现,超轻量的MgB2线表现出高的临界电流密度以及对机械应力的耐受性。这预先确定了这种轻质超导线在航空和航天应用以及需要减少系统质量的强大海上风力发电机中的潜在用途。

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