Manufacture and performance test result of a 95 kA-class Nb-Ti cable-in-conduit conductor for the low field winding-package of CFETR-TF coil

•A Nb-Ti cable-in-conduit conductor with large size, high transfer current was designed and manufactured.•The sample has been tested in SULTAN facility successfully, the results show that the conductor is able to sustain the EM load equal to its operation condition and the performance of the conduct...

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Veröffentlicht in:Physica. C, Superconductivity Superconductivity, 2023-03, Vol.606, p.1354212, Article 1354212
Hauptverfasser: Dai, Chao, Wu, Yu, Sedlak, Kamil, Bajas, Hugo, Nijhuis, Arend, Bruzzone, Pierluigi, Devred, Arnaud, Qin, Jinggang, Liu, Yunhao, Xue, Tianjun, Wu, Zuojiafeng
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Sprache:eng
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Zusammenfassung:•A Nb-Ti cable-in-conduit conductor with large size, high transfer current was designed and manufactured.•The sample has been tested in SULTAN facility successfully, the results show that the conductor is able to sustain the EM load equal to its operation condition and the performance of the conductor is stable after 500 EM cycles and one warm-up cool-down cycle.•The TF conductor performance agrees well with the single strand performance and meets the requirements. The engineering design of the CFETR TF prototype coil and conductors has been completed. The wind-package (WP) of the coil is graded into three regions based on the magnetic field distribution for saving cost. High-Jc Nb3Sn strand, ITER-like Nb3Sn strand and Nb-Ti strand are applied for high-field, mid-field and low-field WP respectively. In order to verify the conductor design, full-size short samples have been manufactured for the three types of conductors. The samples are tested in the SULTAN facility at CRPP in Villigen, Switzerland. At present, the test of Nb-Ti conductor for low-field WP is finished, DC and AC tests were performed. In DC test, several current sharing temperature (Tcs) measurements were performed with 500 electromagnetic cycles and one thermal cycle. Additionally, minimum quench energy (MQE) measurement was performed for investigating the stability of the conductor. The test results and analysis are reported in this paper.
ISSN:0921-4534
1873-2143
DOI:10.1016/j.physc.2023.1354212