首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Influence of Al Composition Thickness on Critical Current Density in Transformation-Processed src='/images/tex/818.gif' alt='hbox {Nb}_{3}hbox {Al}'> Superconductors
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Influence of Al Composition Thickness on Critical Current Density in Transformation-Processed src='/images/tex/818.gif' alt='hbox {Nb}_{3}hbox {Al}'> Superconductors

机译:铝成分厚度对转变处理的中的临界电流密度的影响 src =“ / images / tex / 818.gif” alt =“ hbox {Nb} _ {3} hbox {Al}”> < / inline-formula>超导体

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The influence of the Al layer thickness on the critical current density of transformation-processed superconductors was investigated. The Al layer thickness in the jerry-roll filaments of precursor wires was varied from 120 to 250 nm; the Nb layer thickness is proportional to the Al thickness, keeping the Nb–Al composition ratio to 3. The rapid heating and quenching (RHQ) operation condition was varied within a range of the conditions to form the ductile body-centered cubic (BCC) Nb–Al phase. The RHQ wires were also followed by an areal reduction process prior to the phase transformation. Thinner Al thickness wires show a steeper increase in with reduction in the area, whereas thicker Al thickness wires show a slower increase. The best performance was obtained for the thinnest Al thickness sample. Without areal reduction, there was not much difference in the optimum with respect to the Al thickness.
机译:研究了铝层厚度对相变超导体临界电流密度的影响。前驱线的杰瑞辊丝中的Al层厚度在120至250nm之间变化。 Nb层的厚度与Al的厚度成正比,从而使Nb-Al的组成比保持为3。快速加热和淬火(RHQ)操作条件在一定范围内变化,以形成延性体心立方(BCC) Nb-Al相。在相变之前,还对RHQ导线进行了面积减小处理。 Al细线越细,面积减小越陡峭,而Al细线越粗,增大越慢。对于最薄的Al厚度样品,获得了最佳性能。在不减小面积的情况下,关于Al厚度的最佳值差异不大。

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