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Nonuniform deformation of niobium diffusion barriers in niobium-titanium wire

机译:铌钛丝中铌扩散阻挡层的非均匀变形

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A major source of extrinsic limitation to the critical current density in Nb-46.5 wt.% Ti superconductors has been sausaging initiated by the formation of hard intermetallics of Cu-Ti-Nb at the Cu-superconductor interface during precipitation heat treatment. The main defense against this is the use of a diffusion barrier (normally Nb foil) between the Cu and the Nb-Ti, which has a tendency to deform in a nonuniform manner even prior to heat treatment. Initial examination of Superconducting Super Collider (SSC) R&D composites indicated that most of the nonuniform deformation of the barrier occurred at the interface between the Nb barrier and the Nb-Ti. The authors have examined the effect of varying the starting Nb-Ti grain size on the uniformity of barrier thickness reduction during wire drawing. For all the wires tested the nonuniformity of the barrier increased with drawing strains and with increasing initial Nb-Ti grain size. They also compared the barrier of cold drawn monofilament to that of warm extruded filaments. The extruded filaments had a significantly more nonuniform barrier.
机译:外来限制Nb-46.5 wt。%Ti超导体中的临界电流密度的主要根源是由于沉淀热处理过程中在Cu-Ti-Nb的硬金属间化合物Cu-Ti-Nb的形成而引发的腐蚀。对此的主要防御方法是在Cu和Nb-Ti之间使用扩散阻挡层(通常为Nb箔),即使在热处理之前,该扩散阻挡层也会以不均匀的方式变形。对超导超级对撞机(SSC)研发复合材料的初步检查表明,该势垒的大部分非均匀变形都发生在Nb势垒与Nb-Ti之间的界面处。作者研究了在拉丝过程中改变起始Nb-Ti晶粒尺寸对降低势垒厚度的均匀性的影响。对于所有测试的导线,势垒的不均匀性都随着拉拔应变和初始Nb-Ti晶粒尺寸的增加而增加。他们还比较了冷拔单丝和热挤丝的阻隔性。挤出的长丝具有明显更不均匀的阻挡层。

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