Machine learning-based damage sensing and self-healing of carbon fiber/nylon composites via addressable conducting networks
Author:
Affiliation:
1. Department of Mechanical Engineering, Hanyang University, Seoul, Republic of Korea
2. Institute of Nano Science and Technology, Hanyang University, Seoul, Republic of Korea
Abstract
Funder
Korea Evaluation Institute of Industrial Technology
Korea Institute of Energy Technology Evaluation and Planning
Publisher
SAGE Publications
Subject
Mechanical Engineering,Biophysics
Link
http://journals.sagepub.com/doi/pdf/10.1177/14759217221141764
Reference20 articles.
1. Damage sensing of adhesively-bonded hybrid composite/steel joints using carbon nanotubes
2. Microstructural damage dependent stiffness prediction of unidirectional CFRP composite under cyclic loading
3. Interfacially reinforced unsaturated polyester carbon fiber composites with a vinyl ester-carbon nanotubes sizing agent
4. Analysis of the damage mechanisms in mixed-mode delamination of laminated composites using acoustic emission data clustering
5. Enhancing fatigue resistance and damage characterisation in adhesively-bonded composite joints by carbon nanofibres
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1. Integration of carbon nanotube yarns into glass‐fiber reinforced composites for electrical self‐sensing of damage under cyclic bending and impact loading;Polymer Composites;2024-07-26
2. Intelligent Computational Methods for Damage Detection of Laminated Composite Structures for Mobility Applications: A Comprehensive Review;Archives of Computational Methods in Engineering;2024-06-03
3. In-situ damage self-sensing and strength recovery activated by self-electricity in carbon fibrous composites embedded with multi-functional interleaves;Composites Part A: Applied Science and Manufacturing;2023-12
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