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摘要: 国际热核聚变实验堆计划是目前我国参与的最大的国际合作项目,CICC( Cable-In-Conduit Conductors)( Q* C5 Y. \- ^" o2 \" a4 X
导体具有较低的交流损耗,是核聚变装置的首选导体。介绍了CICC 导体的结构及其绞缆试制过程,确定了) _" \( J) ]; @
CICC 导体绞缆工艺技术路线。多次绞缆试制表明,第五级子缆的绞制加工尤其是外径控制是整个CICC 导体1 m1 T9 J3 \) |
绞缆关键环节。多道辊压+ 定径哈夫模控制技术可有效地控制CICC 绞缆的外径,并不对单线造成损伤。
3 R, N- C5 P5 R8 `关键词: 核聚变装置; CICC; 超导电缆; 绞缆- p" k) \% q+ k+ e1 u# g
Research for the Optimization of the Cabling Process of CICC Conductor# D+ d+ a. m: f n1 i: |; q
TENG Yu-ping,et al
! K5 q7 r, X- E; F1 T" P n: ^/ G( Institute of Electrical Engineering,Chinese Academy of Sciences,Beijing 100190,China)
+ g0 w3 n1 W* h" cAbstract: ITER( International Thermonuclear Experimental Reactor) is the largest international cooperating program,+ @8 C$ Q+ ?6 L
which is being participated in by China. CICC ( Cable-In-Conduit Conductors) conductor was deemed to be the preferred/ z+ @; ^& W1 b& {$ C. {% u
conductor for ITER program due to its lower ac loss. The structure and the cabling process of the CICC conductor) `4 J; X" a( h* R9 ^
are introduced in this paper. The technique route of cabling has been established. The cabling process and the+ K& a- b1 N3 K
controlling especially the diameter of the fifth-class cable are the key points for the cabling of CICC conductor. The
3 L- s Q2 T' H2 S7 w# T! \diameter of the CICC conductor can be controlled efficiently by multi-rolling die + half-die for diameter controlling
& i% M( v0 k- b8 k- J' `* wwithout injure to strands line.
+ u6 N! ^ g$ B% D/ yKey words: ITER; CICC; superconducting cable; cabling |
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