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Structure and Mechanical Properties of Bimetal Nb/Cu Rods for Production of Nb_3Sn Superconductors

机译:用于生产NB_3SN超导体的双金属Nb / Cu棒的结构和力学性能

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To construct magnetic systems in modern high-energy physics projects, such as creation of the Future Circular Collider (FCC) and modernization of the Large Hadron Collider (HL-LHC), Nb_(3)Sn superconductors with a high level of electrophysical properties, above all being a high current carrying capacity, are requisite. Such multifilament Nb_(3)Sn superconductors are obtained by the technique of internal feeding of tin (IFT), consisting in deformation of a composite including high-purity niobium, copper, and tin to make a wire smaller less than 1 mm in diameter. The presence of such components as tin-based alloys or pure tin with T _(m)= 232°C in the composite wire composition precludes the possibility of Nb recrystallization annealing, which imposes strict requirements on the Nb mechanical properties, which determine the Nb capability for plastic deformation. In the study, the influence of the design and conditions of creating bimetal Nb/Cu rods on the grain structure of niobium and the state of the boundary between it and a copper sheath is discussed. The mechanical properties of rods at different steps of their fabrication are investigated. The results will be applied in development of the technological conditions of manufacture of Nb_(3)Sn superconductors by the IFT technique.
机译:在现代高能量物理项目中构建磁系统,例如创建未来的圆形撞机(FCC)和大型强子撞机(HL-LHC)的现代化,NB_(3)SN超导体具有高水平的电神法性质,最重要的是,是一种高电流承载能力,是必要的。这种多丝Nb_(3)Sn超导体通过锡(IFT)的内部进料技术而获得,其变形包括高纯度铌,铜和锡,以使导线直径小于1mm。在复合线组合物中存在如锡基合金或纯锡,其在复合线组合物中的纯锡= 232℃尿液中Nb重结晶退火的可能性,这对Nb机械性能施加了严格的要求,该性能决定了NB塑性变形的能力。在该研究中,讨论了在铌的铌晶粒结构上产生生成双金属Nb / Cu棒的设计和条件的影响及其边界的状态和铜护套的状态。研究了它们制造的不同步骤的杆的机械性能。结果将应用于IFT技术制造NB_(3)SN超导体的技术条件的开发。

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