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Strengthening reinforced concrete beams through integration of CFRP bars, mechanical anchorage system, and concrete jacketing

Alkhateeb, Mahmood Y.; Hejazi, Farzad

Strengthening reinforced concrete beams through integration of CFRP bars, mechanical anchorage system, and concrete jacketing Thumbnail


Authors

Mahmood Y. Alkhateeb

Farzad Hejazi



Abstract

The demand for strengthening reinforced concrete (RC) structures has increased considerably. Implementing carbon-fiber-reinforced polymer (CFRP) bars and concrete jacketing are the most effective techniques for RC beam retrofitting. Using the mechanical anchorage system (MAS) to attach CFRP bars to old concrete is highly recommended to avoid any debonding when it is applied to cyclic loads. However, the design of strengthening details is the most challenging issue because it involves many effective parameters. In this study, a design process for strengthening beams using CFRP bars with new MASs and concrete jacketing is proposed, and various design schemes are studied. The number of applied MASs and the thickness and grade of the concrete jacket were investigated through experimental testing and finite element (FE) simulations to define strengthening design details, such as the number and size of employed CFRP bars. Accordingly, an analytical technique was formulated to predict the performance of the strengthened beam in terms of the nominal ultimate load. The results demonstrated the high performance of the proposed system in preventing premature debonding. The proposed system enhances the beam capacity from 44 kN to 83 kN, representing an increase of more than 90%. In contrast, the conventional near-surface mounted (NSM) system exhibits a lower percentage increase at less than 37%. Both FE simulations and analytical approaches can be effectively employed to predict the behavior and capacity of the strengthened beam while considering various design parameters.

Journal Article Type Article
Acceptance Date Jun 4, 2024
Online Publication Date Jun 7, 2024
Publication Date Jun 2, 2024
Deposit Date Jul 24, 2024
Publicly Available Date Jul 25, 2024
Journal Materials
Print ISSN 1996-1944
Electronic ISSN 1996-1944
Publisher MDPI
Peer Reviewed Peer Reviewed
Volume 17
Issue 12
Article Number 2794
DOI https://doi.org/10.3390/ma17122794
Public URL https://uwe-repository.worktribe.com/output/12081273

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