An Experimental Study on the Effect of GFRP and CFRP Strengthening on the Static and Dynamic Behavior of R/C Beams Under Progressive Damage

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Date

2024

Authors

Onur Ozturkoglu
Umut Yucel
Cihan Karademir
Erkan Durmazgezer

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MDPI

Open Access Color

GOLD

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Yes

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Abstract

This paper aims to investigate the effect of glass fiber-reinforced polymer (GFRP) and carbon fiber-reinforced polymer (CFRP) strengthening materials on the static and dynamic behavior of reinforced concrete (R/C) beams subjected to progressive damage. Four identical beams each strengthened with either GFRP or CFRP are tested under a cyclic quasi-static loading pattern. Impact hammer tests are performed for undamaged states and various damage levels of the beams. The dynamic test data are analyzed using the Enhanced Frequency Domain Decomposition (EFDD) method to estimate the dynamic characteristics of the beams. In this context the first three vibration modes in both vertical and horizontal directions are considered. Strengthening is applied to both pre-damaged and undamaged beams enabling a comparison of their performance before and after the strengthening procedure. Beams strengthened with CFRP exhibit a higher load-bearing capacity and stiffness but also fail at lower displacement levels compared to those strengthened with GFRP which demonstrate more ductile behavior. Furthermore the modal frequency ratios indicate that the first vibration mode is more sensitive to damage than the second and third modes. This study highlights the effectiveness of both strengthening materials in enhancing the structural performance of both undamaged and damaged beams.

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Keywords

beam strengthening, GFRP, CFRP, pre-damaged, operational modal analysis, progressive damage, dynamic behavior, quasi-static loading, MOUNTED FRP REINFORCEMENT, RC BEAMS, IDENTIFICATION, PLATES, Progressive Damage, Pre-damaged, Quasi-Static Loading, Beam Strengthening, Dynamic Behavior, Operational Modal Analysis, GFRP, CFRP, Technology, progressive damage, QH301-705.5, T, Physics, QC1-999, Operational Modal Analysis, Quasi-static Loading, Engineering (General). Civil engineering (General), beam strengthening, Beam Strengthening, Pre-Damaged, operational modal analysis, Chemistry, pre-damaged, Progressive Damage, GFRP, Dynamic Behavior, CFRP, TA1-2040, Biology (General), QD1-999

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Applied Sciences

Volume

14

Issue

21

Start Page

9920

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Scopus : 1

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Mendeley Readers : 14

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2

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2

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