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Uniform transport performance of a 100 m-class multifilament MgB2 wire fabricated by an internal Mg diffusion process

机译:通过内部Mg扩散工艺制造的100 m级复丝MgB2线的均匀传输性能

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摘要

A 100 m long six-filament MgB2 wire was successfully fabricated using an internal magnesium diffusion (IMD) process. We investigated the transport properties and the uniformity of this long multifilament IMD wire. The MgB2 layer and the sub-filament region are regular, and the J(c) values have a fairly homogenous distribution throughout the wire, suggesting that there were no obvious defects along the length of the wire. The uniformity problem of long multifilament IMD MgB2 wires can be mitigated by optimizing the starting composite parameters, multifilament geometry, fabricating process and annealing conditions. A layer J(c) as high as 1.2. x. 10(5) A cm(-2) at 4.2 K and 8 T was obtained, which was comparable with the highest reported value for a short multifilament IMD wire. The transport layer J(c), non-barrier J(c) and J(e) values are independent of the wire diameter. In addition, the analysis of the stress-strain characteristics and the n value of the IMD wire is also presented. These results indicate that the long multifilament IMD-processed MgB2 superconducting wire is suitable for practical applications.
机译:使用内部镁扩散(IMD)工艺成功制造了100 m长的六丝MgB2线。我们研究了这种长复丝IMD线材的传输性能和均匀性。 MgB2层和亚丝区域是规则的,并且J(c)值在整个导线中具有相当均匀的分布,这表明沿着导线的长度没有明显的缺陷。通过优化起始复合材料参数,复丝的几何形状,制造工艺和退火条件,可以缓解长复丝IMD MgB2导线的均匀性问题。层J(c)高达1.2。 X。在4.2 K和8 T下获得10(5)cm(-2),与短复丝IMD线的最高报告值相当。传输层J(c),无障碍J(c)和J(e)值与导线直径无关。另外,还对IMD线的应力应变特性和n值进行了分析。这些结果表明,长复丝IMD处理的MgB2超导线适用于实际应用。

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