The research on the impact of compaction and twisting on the critical current performance of six-around-one copper-reinforced REBCO cable-in-conduit conductors
作者:Hai-Hong Liu, Wenzhe Hong, Huan Jin, Le Wang, Shijie Shi, Guanyu Xiao, Tianli Dai, Chao Zhou, Jinggang Qin · 发表于:Superconductor Science and Technology · 年份:2025 · DOI:10.1088/1361-6668/adcbfe · 被引用次数:6 · 研究领域:HVDC Systems and Fault Protection、Thermal Analysis in Power Transmission、High-Voltage Power Transmission Systems
Abstract Rare-earth barium copper oxide (REBCO) superconductors are recognized for their excellent electrical conductivity and thermal stability, making them promising candidates for high-current applications in future fusion reactors. However, their unique structure and anisotropic properties challenge stable operation in low-temperature (4.2 K) and high-field (20 T). To address these issues, the Institute of Plasma Physics, Chinese Academy of Sciences has developed a six-around-one copper-reinforced cable-in-conduit conductor (CICC) configuration using highly flexible REBCO cables (HFRC) for the central solenoid coil in next-generation fusion reactors. This study introduces an optimized design for a six-around-one copper-reinforced CICC and evaluates the feasibility of its compaction and twisting processes. Initially, considering factors such as the CICC’s and sub-cable’s geometric configuration and dimensions, a statistical analysis was conducted on experimental data concerning variations in outer diameter, inner diameter, and wall thickness of four different copper tube specifications after compaction. The results indicated that the copper tube with an outer diameter of 12.5 mm and a wall thickness of 0.9 mm exhibited minimal deformation during the compaction process by compaction equipment. Consequently, this specification is preferable for sub-cable compaction. Subsequently, three HFRC cables and two conductor-on-round-core cables were compacted within this copper tube,...