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1.
Microstructure and Mechanical Properties of the Enclosure Welding Joint for ITER Correction Coils Cases / Xin, Jijun (Hefei, Inst. Plasma Phys.) ; Fang, Chao (Hefei, Inst. Plasma Phys.) ; Yang, Wuxiong (Beijing U. of Tech.) ; Huang, Chuanjun (Beijing, Tech. Inst. Phys. Chem.) ; Dai, Wenhua (Hefei, Inst. Plasma Phys.) ; Wei, Jing (Hefei, Inst. Plasma Phys.) ; Song, Yuntao (Hefei, Inst. Plasma Phys.) ; Li, Laifeng (Beijing, Tech. Inst. Phys. Chem.) ; Fabrice, Simon (Euratom, St. Paul Lez Durance) ; Paul, Libeyre (Euratom, St. Paul Lez Durance) et al.
To resist the alternating electromagnetic loads, the International Thermonuclear Experimental Reactor (ITER) correction coils are protected by a 20-mm-thick 316LN austenitic stainless steel case. According to the strict tolerance requirement of the case manufacture, laser welding was applied to enclosure welding of the cases with a 20-kW high-power laser for root pass and Tungsten Inert Gas welding was applied for filler and cover passes. [...]
2020 - 8 p. - Published in : IEEE Trans. Appl. Supercond. 30 (2020) 8401208
2.
Manufacture and Test of the ITER TF Type HTS Current Lead Prototypes / Ding, Kaizhong (Hefei, Inst. Plasma Phys.) ; Zhou, Tingzhi (Hefei, Inst. Plasma Phys.) ; Ballarino, Amalia (CERN) ; Gung, Chenyu (Southampton U.) ; Lu, Kun (Hefei, Inst. Plasma Phys.) ; Song, Yuntao (Hefei, Inst. Plasma Phys.) ; Niu, Erwu (Beihang U.) ; Bauer, Pierre (BIAM, St Paul lez Durance) ; Devred, Arnaud (BIAM, St Paul lez Durance) ; Lee, Seungje (BIAM, St Paul lez Durance) et al.
High temperature superconducting current leads (HTS-CL) are designed to supply the current to the large superconducting ITER magnets for the operation with reduced heat load to the cryogenic system. The Toroidal field (TF) current leads are the largest with a current capacity of 68 kA each. [...]
2019 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 29 (2019) 4802605 fulltext from publisher: HTML;
3.
Microstructure and Mechanical Properties of ITER Correction Coil Case Material / Xin, Jijun (Hefei, Inst. Plasma Phys.) ; Fang, Chao (Hefei, Inst. Plasma Phys.) ; Song, Yuntao (Hefei, Inst. Plasma Phys.) ; Wei, Jing (Hefei, Inst. Plasma Phys.) ; Huang, Chuanjun (Beijing, Tech. Inst. Phys. Chem.) ; Libeyre, Paul (Euratom, St. Paul Lez Durance) ; Simon, Fabrice (Euratom, St. Paul Lez Durance) ; Sgobba, Stefano (CERN)
The modified 316LN austenitic stainless steel was selected as ITER correction coils case material to provide structural reinforcement to the winding pack. Considering the case structure, high-assembling accuracy and other strict requirements, 316LN in special extruded form has been developed. [...]
2017 - 7 p. - Published in : IEEE Trans. Appl. Supercond. 27 (2017) 4201707
- Published in : IEEE Trans. Appl. Supercond. 30 (2019) 9700101
4.
Manufacture and Test of ITER 10-kA HTSCL Prototypes / Zhou, Tingzhi (Hefei, Inst. Plasma Phys.) ; Ding, Kaizhong (Hefei, Inst. Plasma Phys.) ; Liu, Chenglian (Hefei, Inst. Plasma Phys.) ; Lu, Kun (Hefei, Inst. Plasma Phys.) ; Ran, Qingxiang (Hefei, Inst. Plasma Phys.) ; Song, Yuntao (Hefei, Inst. Plasma Phys.) ; Niu, Erwu (Tsinghua U., Beijing, KLPRI) ; Bauer, Pierre (Cadarche, CEN) ; Devred, Arnaud (Cadarche, CEN) ; Lee, Seungje (Cadarche, CEN) et al.
To carry current for the ITER correction coils, the 10-kA high-temperature superconducting current leads studied here are designed. Current leads provide the transition from 4.5-K low temperature to room temperature. [...]
2016 - 5 p. - Published in : IEEE Trans. Appl. Supercond. 26 (2016) 4802505
5.
The Laser Welding with Hot Wire of 316LN Thick Plate Applied on ITER Correction Coil Case / Fang, Chao (ASIPP, Anhui) ; Song, Yuntao (ASIPP, Anhui) ; Wu, Weiyue (ASIPP, Anhui) ; Wei, Jing (ASIPP, Anhui) ; Zhang, Shuquan (ASIPP, Anhui) ; Li, Hongwei (ITER China, Beijing) ; Dolgetta, N (ITER, St. Paul Lez Durance) ; Libeyre, P (ITER, St. Paul Lez Durance) ; Cormany, C (ITER, St. Paul Lez Durance) ; Sgobba, S (CERN)
ITER correction coil (CC) cases have characteristics of small cross section, large dimensions, and complex structure. The cases are made of heavy thick (20 mm), high strength and high toughness austenitic stainless steel 316LN. [...]
2014 - Published in : J. Fusion Energy 33 (2014) 752-758

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