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A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface

The failure or debonding of CEIs (Concrete-Epoxy Interfaces) in Fiber-Reinforced Polymer concrete (FRP) systems occurs in one or a combination of three modes: CC (Cohesive failure in Concrete), CE (Cohesive failure in Epoxy), and IF (Interfacial Failure). These failure modes are usually identified,...

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Autores principales: Ishaq, Abubakar Sodiq, Jang, Yoonju, An, Donghyeok, Jeong, Yoseok, Youn, Ilro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052083/
https://www.ncbi.nlm.nih.gov/pubmed/36984257
http://dx.doi.org/10.3390/ma16062376
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author Ishaq, Abubakar Sodiq
Jang, Yoonju
An, Donghyeok
Jeong, Yoseok
Youn, Ilro
author_facet Ishaq, Abubakar Sodiq
Jang, Yoonju
An, Donghyeok
Jeong, Yoseok
Youn, Ilro
author_sort Ishaq, Abubakar Sodiq
collection PubMed
description The failure or debonding of CEIs (Concrete-Epoxy Interfaces) in Fiber-Reinforced Polymer concrete (FRP) systems occurs in one or a combination of three modes: CC (Cohesive failure in Concrete), CE (Cohesive failure in Epoxy), and IF (Interfacial Failure). These failure modes are usually identified, and their relationships are established by human intuition, which is prone to subjectivity. This study proposes a novel method based on image processing techniques to analyze CEI fracture surfaces and evaluate their failure modes. The failure modes of CEI fracture surfaces of specimens from a 3PB (Three-Point Bending) experiment were assessed using an HVS, CIE L*a*b*, YC(b)C(r), or RGB color space image segmentation-based image processing technique on the preprocessed images of the CEI failure sides. A manual approach was adopted to validate the accuracy of the proposed method. Comparing the failure mode (CE) obtained using the manual and the proposed methodology, an RMSE (Root Means Square Error) of 0.19, 0.10, 0.23, and 0.26 was obtained for HVS, CIE L*a*b*, YC(b)C(r), or RGB color space, respectively. The epoxy area selected with CIE L*a*b* color space produced the most accurate evaluation of the failure modes. This study provides an accurate method of quantifying the failure modes of CEI fracture surfaces. The methodology proposed in this study is recommended for forensic investigations to understand better the possible causes of failure in externally bounded fiber-reinforced polymers.
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spelling pubmed-100520832023-03-30 A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface Ishaq, Abubakar Sodiq Jang, Yoonju An, Donghyeok Jeong, Yoseok Youn, Ilro Materials (Basel) Article The failure or debonding of CEIs (Concrete-Epoxy Interfaces) in Fiber-Reinforced Polymer concrete (FRP) systems occurs in one or a combination of three modes: CC (Cohesive failure in Concrete), CE (Cohesive failure in Epoxy), and IF (Interfacial Failure). These failure modes are usually identified, and their relationships are established by human intuition, which is prone to subjectivity. This study proposes a novel method based on image processing techniques to analyze CEI fracture surfaces and evaluate their failure modes. The failure modes of CEI fracture surfaces of specimens from a 3PB (Three-Point Bending) experiment were assessed using an HVS, CIE L*a*b*, YC(b)C(r), or RGB color space image segmentation-based image processing technique on the preprocessed images of the CEI failure sides. A manual approach was adopted to validate the accuracy of the proposed method. Comparing the failure mode (CE) obtained using the manual and the proposed methodology, an RMSE (Root Means Square Error) of 0.19, 0.10, 0.23, and 0.26 was obtained for HVS, CIE L*a*b*, YC(b)C(r), or RGB color space, respectively. The epoxy area selected with CIE L*a*b* color space produced the most accurate evaluation of the failure modes. This study provides an accurate method of quantifying the failure modes of CEI fracture surfaces. The methodology proposed in this study is recommended for forensic investigations to understand better the possible causes of failure in externally bounded fiber-reinforced polymers. MDPI 2023-03-16 /pmc/articles/PMC10052083/ /pubmed/36984257 http://dx.doi.org/10.3390/ma16062376 Text en © 2023 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
Ishaq, Abubakar Sodiq
Jang, Yoonju
An, Donghyeok
Jeong, Yoseok
Youn, Ilro
A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface
title A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface
title_full A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface
title_fullStr A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface
title_full_unstemmed A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface
title_short A Novel Approach to Quantifying the Failure Modes of Concrete-Epoxy Interface
title_sort novel approach to quantifying the failure modes of concrete-epoxy interface
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10052083/
https://www.ncbi.nlm.nih.gov/pubmed/36984257
http://dx.doi.org/10.3390/ma16062376
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