Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7213929 | Composites Science and Technology | 2018 | 9 Pages |
Abstract
In this work, damage sensing and self-healing of carbon fiber polypropylene (CFPP)/carbon nanotube (CNT) nano-composite were performed based on addressable conducting network (ACN). To increase damage sensing resolution of CFPP/CNT nano-composite, through-thickness electrical conductivity was improved by adjusting press condition and spraying carbon nanotubes (CNT) between prepregs. From the results, electrical resistivity in thickness direction was reduced to 19.44â¯Î©Â·mm under 1.0â¯MPa and 1.0â¯wt% of CNT condition. Also, self-healing efficiency was examined with respect to the temperature and time via resistive heating of CFPP/CNT nano-composite. As a result, the optimized fabrication and self-healing condition exhibited high resolution of damage sensing with outstanding self-healing efficiency (96.83%) under fourth cycle of repeated three-point bending test.
Keywords
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Physical Sciences and Engineering
Engineering
Engineering (General)
Authors
Sung-Jun Joo, Myeong-Hyeon Yu, Won Seock Kim, Hak-Sung Kim,