铝稳定的二硼化镁超导体

S. Dou, E. Collings, O. Shcherbakova, A. Shcherbakov
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引用次数: 2

摘要

研究了用铝作稳定剂,铁作反应阻挡剂制备MgB2超导体线。采用Fe/Al管技术,采用Mg+ 2b粉末或SiC掺杂Mg+ 2b粉末制备了MgB2/Fe/Al或SiC掺杂MgB2/Fe/Al复合线材。将复合材料在600℃~ 650℃下处理30分钟~ 3小时,研究Fe和Al鞘层之间的相互作用和MgB2的形成。直到620℃退火30分钟,Fe和Al才发生反应。在620℃退火90分钟后,试样形成了一层薄薄的FeAl3合金,随着退火温度的升高,反应层逐渐增大。650℃退火导致铝鞘出现裂纹。我们的研究结果表明,铁/铝护套线在磁性和电学性能上与使用全铁护套的线相同。与标准的NbTi/Cu导体相比,MgB2/Fe/Al导体具有结构质量小、导热系数大、稳定率高等优点。
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Aluminum‐Stabilized Magnesium Diboride Superconductors
Use of aluminum as stabilizer and iron as reaction barrier for fabrication of MgB2 superconductor wires was studied. The MgB2/Fe/Al or SiC doped MgB2/Fe/Al composite wires were made using Mg+ 2 B powder or SiC doped Mg+2 B powder in Fe/Al tube technique. The composites were processed at 600°C to 650°C for 30 minutes to 3 hours to study the interaction between Fe and Al sheath and the formation of MgB2. No reaction between Fe and Al was found until annealing temperature at 620°C for 30 minutes. A thin layer of alloy, FeAl3 is formed for samples annealed at 620°C for 90 minutes and the reaction layer increases with increasing annealing temperature. Annealing at 650°C resulted in cracks in the Al sheath. Our results show that the Fe/Al sheathed wires achieved the same performance in magnetic and electrical properties as those using an all‐Fe sheath. Comparing with the standard NbTi/Cu conductors, the MgB2/Fe/Al conductor having low structural mass, greater thermal conductivity and high efficient stabilizatio...
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