具有潜在缺陷的多丝 REBCO 胶带的不均匀临界电流和堆叠效应补救措施

Tiantian Cai, Mingyang Wang, L. Hao, Xuan’ang Meng, Haolan Chen, Junjie Jiang, Jie Sheng, Zhijian Jin
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摘要

在高温超导(HTS)应用中,REBCO 磁带的高纵横比对临界电流和交流损耗等若干特性有重大影响。窄丝技术可以有效降低磁场依赖性的影响,提高 REBCO 磁带的电磁性能。然而,现有的方法受到 REBCO 窄丝和大电流容量之间权衡的限制。同时,在加工用于大型磁体的 REBCO 磁带时,极有可能潜伏着局部缺陷。为了解决这些难题,我们在现有窄化方法的基础上提出了一种条纹窄层结构。为了验证这种结构的有效性,必须探讨不均匀临界电流和堆叠对具有潜在缺陷的多丝 REBCO 磁带性能的影响。本文介绍了一种磁性扩展网络 (MEN) 模型,用于分析具有不同类型潜在缺陷的条纹窄堆叠结构的电气特性。然后,通过与三维有限元法(FEM)电磁模块耦合,将 MEN 模型的计算结果可视化,并用于分析电磁特性,包括分流机制、磁场分布以及堆叠效应引起的临界电流补偿。研究发现,叠层结构成功地为存在潜在缺陷的多丝 REBCO 磁带提供了性能补救措施。这项研究旨在促进 REBCO 磁带在高磁场磁体和大电流应用中的窄化改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-uniform critical current and stacking effect remedy for multi-filament REBCO tapes with potential defects
The high aspect ratio of REBCO tapes has a significant impact on several characteristics in high-temperature superconducting (HTS) applications, like critical current and AC loss. Narrow filamentary technology can effectively reduce the impact of magnetic field dependence and enhance the electromagnetic performance of REBCO tapes. However, the existing methods are constrained by the trade-off between the narrow degree of REBCO filaments and high current capacity. Meanwhile, when processing REBCO tapes for large-scale magnets, there is a great possibility that local defects are lurking. A striated narrow-stacked structure is proposed based on the existing narrowing methods to address these challenges. To verify the validity of this structure, it is imperative to explore the non-uniform critical current and stacking effect on performance for multi-filament REBCO tapes with potential defects. This article introduces a magnetic extended network (MEN) model to analyze the electrical characteristics of striated narrow-stacked structures with different types of potential defects. Then, by coupling with a 3-D finite element method (FEM) electromagnetic module, the calculation results of the MEN model are visualized and used to analyze the electromagnetic characteristics including current sharing mechanism, magnetic field distribution, and critical current compensation due to stacking effect. It is found that stack structures successfully provide the performance remedy for multi-filament REBCO tapes with potential defects. This study aims to promote the narrowing improvement of REBCO tapes in high-field magnets and high-current applications.
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