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Initial growth of tin on niobium for vapor diffusion coating of Nb3Sn

机译:NB3SN蒸汽扩散涂层锡锡的初始生长

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Nb3Sn offers significant potential to exceed the performance of niobium for superconducting radio frequency accelerator cavities. The most promising path toward deployment is by tin vapor diffusion coating of Nb cavity interiors via a two step nucleation-then-growth sequence. Reported here is a materials science study of the nucleation process. We manipulated the accessible range of process variables and determined the effect on composition and microstructure using an array of materials characterization tools. Broadly, nucleation deposits tin as a thin surface phase and, under some conditions, as near-micron sized particles as well, resembling Stranski-Krastanov growth. Conditions that impair nucleation promote the formation of defects, such as patches, in subsequent coating growth. Otherwise no significant effect on the subsequently grown coating was found for structures produced during nucleation.
机译:NB3SN提供超出超导射频加速器腔的铌的性能的显着潜力。 朝向的最有前途的展开路径是通过两步成核 - 然后生长序列的Nb腔室间隙的锡蒸汽扩散涂层。 这里报道了一种物料科学研究了成核过程。 我们操纵了可访问范围的过程变量,并确定了一种材料表征工具阵列对组成和微观结构的影响。 宽泛地,成核沉积锡作为薄表面相,并且在某些条件下,如近微米尺寸的颗粒,类似于斯特拉氏蛋白醇的生长。 损害成核的条件促进后续涂层生长中的缺陷的形成,例如斑块。 否则对随后的生长涂层没有显着影响,用于核切割期间产生的结构。

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