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Featured researches published by Jijun Xin.


IEEE Transactions on Applied Superconductivity | 2017

Qualification of the Manufacturing Procedures of the ITER Correction Coils

P. Libeyre; C. Cormany; N. Dolgetta; E. Gaxiola; Y. Ilyin; N. Mitchell; F. Simon; David Evans; S. Sgobba; Stefanie Langeslag; E. Niu; J. Wei; Li Wang; X. Dong; Xiaowu Yu; Jijun Xin; L. Liu; Chunguang Li; Chao Fang; W. Zheng

The system of correction coils (CC) is a component of the ITER magnet system, required to correct toroidal asymmetries and reduce error magnetic fields detrimental for physical processes in the plasma. It includes 18 coils, inserted in between toroidal field coils and poloidal field coils and split into 3 sets of 6 coils each: bottom correction coils (BCC), side correction coils (SCC), and top correction coils (TCC). BCC and TCC are planar coils, whereas SCC are wound on a cylinder. All CC coils are wound using a 10 kA NbTi cable-in-conduit conductor and are manufactured by ASIPP laboratory (Institute of Plasma Physics, Chinese Academy of Sciences), under the responsibility of ITER China. A manufacturing line was installed in 2013 at ASIPP in a dedicated workshop for the construction of the CC. In order to qualify the manufacturing procedures, a comprehensive qualification program has been set up. This program includes a set of mock-ups, manufactured according to the process to be used for the coils and submitted to different tests. These qualification items are winding, insulation and vacuum pressure impregnation, helium inlet/outlet, terminal joints, case material, filler material between winding-pack and case, case assembly, and terminal service box. Qualification of conductor winding, He inlet/outlet manufacture, winding-pack turn and ground insulation installation and impregnation, case material, winding-pack-case filler material is achieved. This included mechanical testing of materials at room and cryogenic temperature in specialized testing laboratories and high-voltage tests performed at the CC workshop. Joint qualification, relying on electrical tests of joints in a dedicated test facility, is nearly complete. Remaining qualification items are case assembly, winding-pack insertion into case, and case closure welding. Manufacture of the first coil started in 2015 and its winding-pack is near completion.


ieee symposium on fusion engineering | 2015

Status of design and manufacturing of the ITER Central Solenoid and Correction Coils

P. Libeyre; C. Cormany; N. Dolgetta; E. Gaxiola; C. Jong; C. Lyraud; W. Reiersen; D. Everitt; N. Martovetsky; Peter M Rosenblad; M. Cole; K. Freudenberg; Sheng Liu; J.P. Smith; Jing Wei; Lin Wang; Xiaowu Yu; Xiaoyu Dong; Jijun Xin; Chao Li; Wangwang Zheng; Chao Fang

The Final Design of the Central Solenoid (CS) of the ITER Magnet system is currently being completed by the US ITER Domestic Agency (USDA) and the manufacturing line of the coil under installation at the suppliers premises in the USA. The Central Solenoid includes 6 identical Nb3Sn coil modules independently powered and enclosed inside a precompression structure preventing their separation. The CS structure includes 9 subsets, made of Nitronic 50 high strength austenitic stainless steel, evenly distributed around the stack of the 6 modules.


Cryogenics | 2017

Effect of post weld heat treatment on the microstructure and mechanical properties of ITER-grade 316LN austenitic stainless steel weldments

Jijun Xin; Chao Fang; Yuntao Song; Jing Wei; Shen Xu; J.F. Wu


Fusion Engineering and Design | 2015

Microstructural characteristics of the laser welded joint of ITER correction coil sub case

Chao Fang; Yuntao Song; Jing Wei; Jijun Xin; Huapeng Wu; Hekki Handroos; Antti Salminen; Hongwei Li; P. Libeyre; N. Dolgetta


Fusion Engineering and Design | 2015

Thermal analysis of laser welding for ITER correction coil case

Chao Fang; Yougui Song; Weiyue Wu; Jianglong Wei; Jijun Xin; Huapeng Wu; Antti Salminen


IEEE Transactions on Applied Superconductivity | 2017

Microstructure and Mechanical Properties of ITER Correction Coil Case Material

Jijun Xin; Chao Fang; Yuntao Song; Jing Wei; Chuanjun Huang; P. Libeyre; F. Simon; S. Sgobba


Journal of Materials Processing Technology | 2019

Microstructure and mechanical properties of ultra-narrow gap laser weld joint of 100 mm-thick SUS304 steel plates

Wuxiong Yang; Jijun Xin; Chao Fang; Wenhua Dai; Jing Wei; J.F. Wu; Yuntao Song


Fusion Engineering and Design | 2018

Qualification of ITER PF6 helium inlet

Shuangsong Du; Wei Wen; G. Shen; Jijun Xin; Kevin Smith; C. Sborchia; P. Readman; Yuntao Song; Weiyue Wu; Huan Wu


Fusion Engineering and Design | 2018

Development of welding and processing technologies of helium inlet for ITER Correction Coil

Jijun Xin; Chao Fang; Jing Wei; Lin Wang; Shuangsong Du; Chuanjun Huang; Yuntao Song; Laifeng Li


Fusion Engineering and Design | 2018

Evaluation of inter-granular corrosion susceptibility in 316LN austenitic stainless steel weldments

Jijun Xin; Yuntao Song; Chao Fang; Jing Wei; Chuanjun Huang; Shuaixing Wang

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Jing Wei

Chinese Academy of Sciences

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Yuntao Song

Chinese Academy of Sciences

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Chao Fang

Chinese Academy of Sciences

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Chuanjun Huang

Chinese Academy of Sciences

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Chao Fang

Chinese Academy of Sciences

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