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Effect of Multifilamentary Nb/Cu-Sn Wire Diameter on the Nb-3Sn Diffusion Layers Structure

机译:复丝Nb / Cu-Sn线径对Nb-3Sn扩散层结构的影响

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Bronze-processed Nb3Sn-based multifilamentary composites with external diameter of 0.8 and 0.5 mm and coupled Nb filaments have been studied by transmission (TEM) and scanning (SEM) electron microscopy. After the two-staged annealing, 575℃, 150 h + 650℃, 200 h, commonly used for ITER~1 conductors, a nanocrystalline layer of superconducting Nb-3Sn compound is formed in every Nb filament as a result of solid-state reactive diffusion of Sn from the bronze matrix. It is demonstrated that in the wires of smaller external diameter the Nb filaments transformation into the Nb-3Sn compound is more pronounced, that is the amount of the residual Nb is smaller. Besides, the nanocrystalline structure of the Nb-3Sn diffusion layers is more perfect in 0.5 mm diameter wires, namely, the Nb-3Sn grains are finer (their average size being 60 nm compared to 70 nm in 0.8 mm diameter wires) and are more uniform in sizes (the root mean square deviation of grain size distribution is correspondingly 15 and 17 nm).
机译:通过透射(TEM)和扫描(SEM)电子显微镜研究了青铜处理的Nb3Sn基复丝复合材料,其外径分别为0.8和0.5 mm,并耦合了Nb丝。在常用于ITER〜1导体的575℃,150 h + 650℃,200 h两阶段退火之后,由于固态反应,在每根Nb灯丝中形成了超导Nb-3Sn化合物的纳米晶层。 Sn从青铜基质中扩散出来。已经证明,在外径较小的导线中,Nb细丝向Nb-3Sn化合物的转化更明显,即残留Nb的量较小。此外,Nb-3Sn扩散层的纳米晶体结构在直径为0.5 mm的导线中更为完美,即,Nb-3Sn晶粒更细(其平均尺寸为60 nm,而直径为0.8 mm的导线为70 nm)并且更大。尺寸均匀(晶粒尺寸分布的均方根偏差分别为15和17 nm)。

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