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A new RE+011 TSIG method for the fabrication of high quality and large size single domain YBCO bulk superconductors

机译:一种用于制造高质量和大尺寸单畴YBCO体超导体的RE + 011 TSIG新方法

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摘要

High quality single domain YBCO bulk superconductors, 20 mm in diameter, have been fabricated using a new top seeded infiltration and growth method (called the RE + 011 TSIG method), with a new solid phase (Y2O3 + xBaCuO(2)) instead of the conventional Y2BaCuO5 solid phase, x = 0, 0.5, 1.0, 1.2, 1.5, 1.8, 2.0, 2.5, 3.0. The effects of different BaCuO2 contents x on the growth morphology, microstructure, and levitation force have been investigated. The results show that the levitation force of the YBCO bulks first increases and then decreases with increasing x, and reaches maximum levitation forces of about 49.2 N (77 K, 0.5 T, with the traditional liquid phase of YBa(2)Cu(3)Oy + 3 BaCuO2 + 2 CuO) and 47 N (77.3 K, 0.5 T, with the new liquid phase of Y2O3 + 10 BaCuO2 + 6 CuO) when x = 1.2, which is much higher than that of the samples fabricated with the conventional solid phases (23 N). The average Y2BaCuO5 particle size is about 1 mu m, which is much smaller than the 3.4 mu m in the samples prepared with the conventional Y2BaCuO5 solid phase; this means that the flux pinning force of the sample can be improved by using the new solid phase. Based on this method, single domain YBCO bulks 40 mm, 59 mm, and 93 mm in diameter have also been fabricated using the TSIG process with the new solid phases (Y2O3 + 1.2BaCuO(2)). These results indicate that the new TSIG process developed by our lab is a very important and practical method for the fabrication of low cost, large size, and high quality single domain REBCO bulk superconductors.
机译:直径20 mm的高质量单畴YBCO块状超导体是使用新的顶种子浸润和生长方法(称为RE + 011 TSIG方法)制造的,并使用了新的固相(Y2O3 + xBaCuO(2))代替传统的Y2BaCuO5固相,x = 0,0.5,1.0,1.2,1.5,1.8,2.0,2.5,3.0。研究了不同BaCuO2含量x对生长形态,微观结构和悬浮力的影响。结果表明,YBCO块的悬浮力首先随着x的增大而增大,然后减小,并达到约49.2 N(77 K,0.5 T,与传统的YBa(2)Cu(3)液相相比)的最大悬浮力。 Oy + 3 BaCuO2 + 2 CuO)和47 N(77.3 K,0.5 T,Y2O3 + 10 BaCuO2 + 6 CuO的新液相)当x = 1.2时,这比常规样品制备的样品高得多固相(23 N)。 Y2BaCuO5的平均粒径约为1微米,比用常规Y2BaCuO5固相制备的样品中的3.4微米小得多。这意味着可以通过使用新的固相来提高样品的通量钉扎力。基于此方法,还使用TSIG工艺和新的固相(Y2O3 + 1.2BaCuO(2))制作了直径为40 mm,59 mm和93 mm的单畴YBCO。这些结果表明,由我们实验室开发的新的TSIG工艺对于制造低成本,大尺寸和高质量的单域REBCO体超导体是非常重要和实用的方法。

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