迈向高场应用:高性能、低成本铁基超导体

C. Dong, Qingjin Xu, Yanwei Ma
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摘要

高磁场在推动基础科学、核聚变能源和磁共振成像系统方面发挥着至关重要的作用。然而,要广泛使用高磁场磁铁,就需要能够承载大超电流、价格合理的高温超导线材。铁基超导体为推进核聚变反应堆和下一代粒子加速器等重要但成本高昂的科学项目提供了具有经济吸引力的解决方案。在本综述中,我们将从铁基超导线材和带材的制造开始,继续讨论影响电流传输特性的几个关键因素。介绍了最先进的导线和磁带,重点是晶界特性、磁通钉扎和各向异性。柔性导体结构实现了低成本、高机械强度和高热稳定性。我们还回顾了实际应用的最新进展,包括超导接头和插入线圈。最后,我们提出了铁基超导体在未来实际应用中面临的几个关键问题。
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Towards high-field applications: high-performance, low-cost iron-based superconductors
High magnetic fields play a crucial role in advancing basic sciences, fusion energy, and magnetic resonance imaging systems. However, the widespread use of high-field magnets requires affordable high-temperature superconducting wires that can carry large supercurrents. Iron-based superconductors offer an economically attractive solution to push forward important yet costly scientific programs, such as nuclear fusion reactors and next-generation particle accelerators. In this review, we start with the fabrication of iron-based superconducting wires and tapes and continue to discuss several key factors governing the current transport properties. State-of-the-art wires and tapes are introduced with emphasis on grain boundary characteristics, flux pinning, and anisotropy. The flexible conductor architecture enables low cost, large mechanical strength, and high thermal stability. Recent progress in practical applications, including superconducting joints and insert coils, is also reviewed. Finally, we propose several key questions faced by iron-based superconductors in future practical applications.
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