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Development of technology for fabrication of lithium CPS on basis of CNT-reinforced carboxylic fabric

•Preliminary study of carboxylic fabric wettability with liquid lithium is presented.•Preliminary studies of carboxylic fabric wettability with liquid lithium consist in carrying out of experiments at temperatures 673,773 and 873К in vacuum during long time.•A scheme of experimental device for manuf...

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Bibliographic Details
Published in:Fusion engineering and design 2017-04, Vol.117, p.168-174
Main Authors: Tazhibayeva, Irina, Baklanov, Viktor, Ponkratov, Yuriy, Abdullin, Khabibulla, Kulsartov, Timur, Gordienko, Yuriy, Zaurbekova, Zhanna, Lyublinski, Igor, Vertkov, Alexey, Skakov, Mazhyn
Format: Article
Language:English
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Summary:•Preliminary study of carboxylic fabric wettability with liquid lithium is presented.•Preliminary studies of carboxylic fabric wettability with liquid lithium consist in carrying out of experiments at temperatures 673,773 and 873К in vacuum during long time.•A scheme of experimental device for manufacturing of lithium CPS and matrix filling procedure with liquid lithium are presented.•The concept of lithium limiter with CPS on basis of CNT-reinforced carboxylic fabric is proposed. The paper describes the analysis of liquid lithium interaction with materials based on carbon, the manufacture technology of capillary-porous system (CPS) matrix on basis of CNT-reinforced carboxylic fabric. Preliminary study of carboxylic fabric wettability with liquid lithium is presented. The development of technology includes: microstructural studies of carboxylic fabric before its CNT-reinforcing; validation of CNT-reinforcing technology; mode validation of CVD-method for CNT synthesize; study of synthesized carbon structures. Preliminary studies of carboxylic fabric wettability with liquid lithium consist in carrying out of experiments at temperatures 673, 773 and 873К in vacuum during long time. The scheme of experimental device for manufacturing of lithium CPS and matrix filling procedure with liquid lithium are presented. The concept of lithium limiter with CPS on basis of CNT-reinforced carboxylic fabric is proposed.
ISSN:0920-3796
1873-7196
DOI:10.1016/j.fusengdes.2016.07.006