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首页> 外文期刊>Superconductor Science & Technology >Investigation of inter-grain critical current density in Bi2Sr2CaCu2O8+infinity superconducting wires and its relationship with the heat treatment protocol
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Investigation of inter-grain critical current density in Bi2Sr2CaCu2O8+infinity superconducting wires and its relationship with the heat treatment protocol

机译:Bi2SR2CACU2O8 + Infinity超导线中谷粒间临界电流密度的研究及其与热处理方案的关系

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In this work we investigate the effect of each different heat treatment stage in the fabrication of Bi2Sr2CaCu2O8+infinity superconducting wires on intra-grain and inter-grain superconducting properties. We measure magnetic critical temperature T-c values and transport critical current density J(c) at temperatures from 4 K to 40 K and in fields up to 7 T. From an analysis of the temperature dependence of the self-field critical current density J(c)(T) that takes into account weak link behavior and the proximity effect, we study grain boundary (GB) transparency to supercurrents; we also establish a relationship between GB oxygenation in the different steps of the fabrication process and GB transparency to supercurrents. We find that GB oxygenation starts in the first crystallization stage, but it becomes complete in the plateau at 836 degrees C and in slow cooling stages and is further enhanced in the prolonged post-annealing step. Such oxygenation makes GBs more conductive, thus improving the inter-grain J(c) value and temperature dependence. On the other hand, from inspection of the T-c values in the framework of the phase diagram dome, we find that grains are already oxygenated in the crystallization step up to the optimal doping, while successive slow cooling and post-annealing treatments further enhance the degree of overdoping, especially if carried out in oxygen atmosphere rather than in air.
机译:在这项工作中,我们研究了在晶粒内和谷粒间超导性质上的Bi2SR2CACU2O8 + Infinity超导线的制造中的每个不同热处理阶段的效果。我们测量磁性临界温度Tc值,在4 k至40k的温度下传输临界电流密度j(c),并且在最高可达7吨的场景中。从分析自场临界电流密度j的温度依赖性(c )(t)考虑到薄弱的链接行为和邻近效果,我们研究了超级频率的晶界(GB)透明度;我们还在制造工艺的不同步骤中建立了GB氧合的关系,并将GB透明度与超送送。我们发现GB氧合在第一个结晶阶段开始,但它在高原下在836摄氏度和缓慢的冷却阶段中完成,并且在延长的退火后进一步增强。这种氧化使得GBS更具导电,从而改善谷粒间J(C)值和温度依赖性。另一方面,从检查穹顶框架中的TC值检查,我们发现晶粒在结晶步骤中已经氧化到最佳掺杂,而连续缓慢的冷却和退火后处理进一步提高了程度过度铺设,特别是如果在氧气气氛而不是空气中进行。

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