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◆ Superconductor Science and Technology2026-02-01· Materials science

DC performance test of twisted stacked slotted-core CICC prototype under 80 kA current and 10.85 T background field

Shu Tao, Xianfeng Xu, Xilong Yang, Zekun Jin, HongJun Ma, Huan Jin, Kamil Sedlak, M. Búran, Yi Shi, Fang Liu, Huajun Liu, Jinggang Qin, Yu Wu

原始摘要(英文原文)· Original abstract
Abstract The development of high-field superconducting magnets for next-generation fusion devices requires robust, high-current cable-in-conduit conductors (CICCs) that withstand combined electromagnetic, thermal, and mechanical loads. In this work, a 2.8 m-long full-size prototype of a twisted stacked-tape rare-earth barium copper oxide (REBCO) CICC with a lateral support structure was designed, fabricated, and tested at the SULTAN facility. The prototype comprises three twisted stacked slotted-core sub-cables (336 REBCO tapes total), vacuum-solder consolidated onto a slotted copper former, wrapped with copper and 316 l tape and compacted into a CHSN01 stainless-steel jacket. Baseline tests at 77 K and self-field obtained a critical current ( I c ) of 16.6 ± 0.3 kA and an n -value of approximately 27. At a magnetic field of 10.85 T and operating currents of 60 kA and 70 kA, the measured current sharing temperature ( T cs ) values were approximately 23.5 K and 19.6 K, respectively, deviating within 1.0 K of the predicted average for REBCO tapes. Under electromagnetic cycling conditions with currents reaching 75–80 kA and a background field of 10.85 T, the prototype exhibited only a 1.3% reduction in T cs after the 53rd cycle, and remained stable throughout subsequent cycles, demonstrating excellent capability to withstand high-field electromagnetic loads. This represents the successful operation of a twisted stacked-tape conductor-type high-temperature superconducting (HTS) CICC under an electromagnetic load of ∼830 kN·m −1 . The results confirm that vacuum soldering combined with a lateral support structure can effectively enhance the capability of HTS CICC to prevent the degradation under high transverse electromagnetic loads, providing crucial engineering experience for the future development of high-field HTS conductors for fusion magnet applications.
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DC performance test of twisted stacked slotted-core CICC prototype under 80 kA current and 10.85 T background field — 科研速览 Science Skim