High Transport J(C) In Magnetic Fields Up To 28t Of Stainless Steel/Ag Double Sheathed Ba122 Tapes Fabricated By Scalable Rolling Process

SUPERCONDUCTOR SCIENCE & TECHNOLOGY(2015)

引用 55|浏览6
暂无评分
摘要
The recently discovered iron-based superconductors with very high upper critical field (H-c2) and small anisotropy have been regarded as a potential candidate material for high field applications. However, enhancements of superconducting properties are still needed to boost the successful use of iron-based superconductors in such applications. Here, we propose a new sheath architecture of stainless steel (SS)/Ag double sheath and investigate its influence on the microstructures and J(c)-H property. We found that the transport J(c)-H curves for rolled and pressed tapes both show extremely small magnetic field dependence and exceed 3 x 10(4) A cm(-2) under 28 T, which are much higher than those of low-temperature superconductors. More interestingly, 12 cm long rolled tape shows very high homogeneity and sustains J(c) as high as 7.7 x 10(4) A cm(-2) at 10 T. These are the highest values reported so far for iron-based superconducting wires fabricated by scalable rolling process. The microstructure investigations indicate that such high J(c) was achieved by higher density of the core and uniform deformation resulting better texturing. These results indicate that our process is very promising for fabricating long Ba122 wires for high field magnet, i.e. above 20 T.
更多
查看译文
关键词
iron-based superconductors, superconducting wires, high transport J(c)
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要