首页> 外文期刊>The Physics of Metals and Metallography >Textured tape substrates from binary copper alloys with vanadium and yttrium for the epitaxial deposition of buffer and superconducting layers
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Textured tape substrates from binary copper alloys with vanadium and yttrium for the epitaxial deposition of buffer and superconducting layers

机译:含钒和钇的二元铜合金的带状带基材,用于外延沉积缓冲层和超导层

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The structure of tapes of binary Cu-0.6 wt % V and Cu-1 wt % Y alloys and texturing process of them in the course of cold deformation by rolling to similar to 99% and subsequent recrystallizing annealing have been studied. The possibility of achieving the perfect cube texture in thin tapes made from binary copper-based alloys with vanadium and yttrium additions has in principle been shown. This opens the prospect of using them as substrates when manufacturing tapes of second-generation high-temperature superconductors. Optimum annealing conditions for the studied alloys have been determined, which have made it possible to produce the perfect biaxial texture with a content of cube {001}aOE (c) 100 > +/- 10A degrees grains on the surfaces of textured tapes of more than 95%.
机译:研究了二元Cu-0.6 wt%V和Cu-1 wt%Y合金的带材结构,以及在冷变形过程中通过轧制至99%左右并随后进行重结晶退火的过程,对其织构化过程进行了研究。原则上已经证明了在由添加了钒和钇的二元铜基合金制成的薄带中实现完美立方纹理的可能性。这为在制造第二代高温超导体的带材时将它们用作衬底的前景打开了希望。已经确定了用于研究合金的最佳退火条件,这使得有可能产生具有更好的双轴织构,其织构带表面上的晶粒{001} aOE(c)100> +/- 10A度的立方晶粒超过95%。

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