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Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor

Combining two types of reinforcement fiber in a common matrix may lead to different failure modes such as micro-cracks between the layers when the structure is subjected to lower stress levels. Real-time damage detection should be integrated into the hybrid composite structure to provide structural...

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Autores principales: Alblalaihid, Khalid, Alghamdi, Saleh A., Alburayt, Anas, Almutairi, Saif H., Alwahid, Ahmed, Abuobaid, Meshal, Alkhibari, Sabri, Almutairi, Khaled S., Alarifi, Ibrahim M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9027601/
https://www.ncbi.nlm.nih.gov/pubmed/35458951
http://dx.doi.org/10.3390/s22082966
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author Alblalaihid, Khalid
Alghamdi, Saleh A.
Alburayt, Anas
Almutairi, Saif H.
Alwahid, Ahmed
Abuobaid, Meshal
Alkhibari, Sabri
Almutairi, Khaled S.
Alarifi, Ibrahim M.
author_facet Alblalaihid, Khalid
Alghamdi, Saleh A.
Alburayt, Anas
Almutairi, Saif H.
Alwahid, Ahmed
Abuobaid, Meshal
Alkhibari, Sabri
Almutairi, Khaled S.
Alarifi, Ibrahim M.
author_sort Alblalaihid, Khalid
collection PubMed
description Combining two types of reinforcement fiber in a common matrix may lead to different failure modes such as micro-cracks between the layers when the structure is subjected to lower stress levels. Real-time damage detection should be integrated into the hybrid composite structure to provide structural integrity and mitigate this problem. This paper outlines the working mechanisms and the fabrication of an integrated capacitive sensor in an intra-ply hybrid composite (2 × 2 twill weave). Uniaxial tensile and flexural tests were conducted to characterize the proposed sensor and provide self-sensing functionality (smart structure). The sensitivity and repeatability of the capacitive sensor were measured to be around 1.3 and 185 µΔC/Co, respectively. The results illustrate that onset of damage between layers can be detected by in situ monitoring. It can be seen that the initial damage was detected at the turning point where the relative change in capacitance begins to reduce while the load increases. Finite element modeling was also constructed to analyze the test results and explain the reasons behind the turning point. It was shown that the carbon yarns experienced high transverse shear stress (τ(xz)) in the crimp region, leading to inter-fiber cracks.
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spelling pubmed-90276012022-04-23 Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor Alblalaihid, Khalid Alghamdi, Saleh A. Alburayt, Anas Almutairi, Saif H. Alwahid, Ahmed Abuobaid, Meshal Alkhibari, Sabri Almutairi, Khaled S. Alarifi, Ibrahim M. Sensors (Basel) Article Combining two types of reinforcement fiber in a common matrix may lead to different failure modes such as micro-cracks between the layers when the structure is subjected to lower stress levels. Real-time damage detection should be integrated into the hybrid composite structure to provide structural integrity and mitigate this problem. This paper outlines the working mechanisms and the fabrication of an integrated capacitive sensor in an intra-ply hybrid composite (2 × 2 twill weave). Uniaxial tensile and flexural tests were conducted to characterize the proposed sensor and provide self-sensing functionality (smart structure). The sensitivity and repeatability of the capacitive sensor were measured to be around 1.3 and 185 µΔC/Co, respectively. The results illustrate that onset of damage between layers can be detected by in situ monitoring. It can be seen that the initial damage was detected at the turning point where the relative change in capacitance begins to reduce while the load increases. Finite element modeling was also constructed to analyze the test results and explain the reasons behind the turning point. It was shown that the carbon yarns experienced high transverse shear stress (τ(xz)) in the crimp region, leading to inter-fiber cracks. MDPI 2022-04-13 /pmc/articles/PMC9027601/ /pubmed/35458951 http://dx.doi.org/10.3390/s22082966 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Alblalaihid, Khalid
Alghamdi, Saleh A.
Alburayt, Anas
Almutairi, Saif H.
Alwahid, Ahmed
Abuobaid, Meshal
Alkhibari, Sabri
Almutairi, Khaled S.
Alarifi, Ibrahim M.
Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor
title Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor
title_full Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor
title_fullStr Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor
title_full_unstemmed Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor
title_short Interlayer Defect Detection in Intra-Ply Hybrid Composite Material (GF/CF) Using a Capacitance-Based Sensor
title_sort interlayer defect detection in intra-ply hybrid composite material (gf/cf) using a capacitance-based sensor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9027601/
https://www.ncbi.nlm.nih.gov/pubmed/35458951
http://dx.doi.org/10.3390/s22082966
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