Effects of Stirrup Spacing on Shear Performance of Hybrid Composite Beams Produced by Pultruded GFRP Profile Infilled with Reinforced Concrete

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Date

2022

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Springernature

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Green Open Access

No

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Abstract

Pultruded Glass Fiber-Reinforced Polymer (pultruded GFRP) composite produced by the pultrusion method has become popular in civil engineering applications due to its lightness, corrosion resistance and high strength. However, the use of the pultruded profile combining with reinforced concrete is still limited due to a lack of knowledge. Therefore, the behavior of the pultruded GFRP profile infilled with reinforced concrete beams (hybrid beams) is investigated. This study focused on the effects of stirrup spacing for the hybrid beams. Pursuant to this goal, a total of eight different beams were tested under fourpoint loading. One reference beam without the pultruded profile and seven hybrid beams having different stirrup spacings were considered. Moreover, the hybrid beams with and without stirrups were wrapped by unidirectional GFRP composite to investigate the effects of stirrup spacing on shear capacity of the beams strengthened by GFRP composite. The experimental findings revealed that tightening stirrups increased the load and energy dissipation capacities of the hybrid beams; however, it could not prevent brittle failure. On the other hand, wrapping hybrid beams with GFRP composite increased the load and energy dissipation capacities and also prevented brittle failure regardless of the presence of the stirrups. Therefore, it is strongly recommended that the unidirectional pultruded profiles should be strengthened with 90 degrees GFRP wrapping to have ductile behavior.

Description

Madenci, Emrah/0000-0001-8279-9466; Ozkilic, Yasin Onuralp/0000-0001-9354-4784;

Keywords

Pultruded GFRP, Reinforced Concrete, Hybrid Beam, Stirrups, FRP, Wrapping, Glass Fabric, Damage Analysis

Turkish CoHE Thesis Center URL

Fields of Science

02 engineering and technology, 0210 nano-technology, 0201 civil engineering

Citation

WoS Q

Q1

Scopus Q

Q1
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OpenCitations Citation Count
13

Source

Archives of Civil and Mechanical Engineering

Volume

23

Issue

1

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End Page

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CrossRef : 14

Scopus : 27

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Mendeley Readers : 11

SCOPUS™ Citations

27

checked on Feb 03, 2026

Web of Science™ Citations

24

checked on Feb 03, 2026

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