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Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP

In recent years, numerous studies have explored the benefits of utilizing prestressed carbon fiber-reinforced polymer (CFRP) for strengthening concrete structures. However, research on the reinforcement of prestressed CFRP on full-scale hollow RC box girders, particularly damaged bridges, remains li...

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Autores principales: Guo, Xinyan, Zeng, Lingkai, Zheng, Xiaohong, Li, Baojun, Deng, Zhiheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10179489/
https://www.ncbi.nlm.nih.gov/pubmed/37176220
http://dx.doi.org/10.3390/ma16093338
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author Guo, Xinyan
Zeng, Lingkai
Zheng, Xiaohong
Li, Baojun
Deng, Zhiheng
author_facet Guo, Xinyan
Zeng, Lingkai
Zheng, Xiaohong
Li, Baojun
Deng, Zhiheng
author_sort Guo, Xinyan
collection PubMed
description In recent years, numerous studies have explored the benefits of utilizing prestressed carbon fiber-reinforced polymer (CFRP) for strengthening concrete structures. However, research on the reinforcement of prestressed CFRP on full-scale hollow RC box girders, particularly damaged bridges, remains limited. In this study, both experiments and finite element analysis (FEA) were performed to investigate the flexural behavior of full-scale hollow RC box girders with varying degrees of damage, which were strengthened using CFRP with different levels of prestress. The adhesive behavior of the CFRP–concrete interface was considered in the FEA. Numerical simulations were conducted to assess the flexural behaviors of the girders, including failure modes, yield and ultimate loads, and deflections. The results revealed that the application of prestressed CFRP efficiently increased the yield and ultimate loads of the box girders. Specifically, when the degree of damage of the hollow box girder was less than 23%, the flexural bearing capacity of the repaired girder could be recovered after being strengthened with two prestressed CFRP strips measuring 50 mm in width and 3 mm in thickness. However, the risk of premature debonding at the CFRP–concrete interface increased when the prestressing level of CFRP and degree of damage of hollow RC box girders exceeded 35% and 40%, respectively. These findings suggest that the use of prestressed CFRP may be a promising method for repairing damaged hollow RC box girders, but careful consideration of the degree of damage and prestressing level would be necessary to ensure the effectiveness and safety of the repair.
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spelling pubmed-101794892023-05-13 Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP Guo, Xinyan Zeng, Lingkai Zheng, Xiaohong Li, Baojun Deng, Zhiheng Materials (Basel) Article In recent years, numerous studies have explored the benefits of utilizing prestressed carbon fiber-reinforced polymer (CFRP) for strengthening concrete structures. However, research on the reinforcement of prestressed CFRP on full-scale hollow RC box girders, particularly damaged bridges, remains limited. In this study, both experiments and finite element analysis (FEA) were performed to investigate the flexural behavior of full-scale hollow RC box girders with varying degrees of damage, which were strengthened using CFRP with different levels of prestress. The adhesive behavior of the CFRP–concrete interface was considered in the FEA. Numerical simulations were conducted to assess the flexural behaviors of the girders, including failure modes, yield and ultimate loads, and deflections. The results revealed that the application of prestressed CFRP efficiently increased the yield and ultimate loads of the box girders. Specifically, when the degree of damage of the hollow box girder was less than 23%, the flexural bearing capacity of the repaired girder could be recovered after being strengthened with two prestressed CFRP strips measuring 50 mm in width and 3 mm in thickness. However, the risk of premature debonding at the CFRP–concrete interface increased when the prestressing level of CFRP and degree of damage of hollow RC box girders exceeded 35% and 40%, respectively. These findings suggest that the use of prestressed CFRP may be a promising method for repairing damaged hollow RC box girders, but careful consideration of the degree of damage and prestressing level would be necessary to ensure the effectiveness and safety of the repair. MDPI 2023-04-24 /pmc/articles/PMC10179489/ /pubmed/37176220 http://dx.doi.org/10.3390/ma16093338 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
Guo, Xinyan
Zeng, Lingkai
Zheng, Xiaohong
Li, Baojun
Deng, Zhiheng
Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP
title Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP
title_full Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP
title_fullStr Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP
title_full_unstemmed Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP
title_short Flexural Behavior of Damaged Hollow RC Box Girders Repaired with Prestressed CFRP
title_sort flexural behavior of damaged hollow rc box girders repaired with prestressed cfrp
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10179489/
https://www.ncbi.nlm.nih.gov/pubmed/37176220
http://dx.doi.org/10.3390/ma16093338
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