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Analytical and Experimental Study of Short Reinforced Concrete Beams Reinforced with CFRP

Identifiers
URI: http://hdl.handle.net/20.500.12251/3189
ISSN: 23662557
ISBN: 978-981-99-2713-5
DOI: 10.1007/978-981-99-2714-2_12
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Author
González García, María de las Nieves; Prieto Barrio, María Isabel; Cobo Escamilla, Alfonso; Leal Matilla, Alberto
Date
2023
Subject/s

Vigas de hormigón

Estructuras de hormigón armado

Refuerzo estructuras

Fibra de refuerzo

Fibra de carbono

Material de construcción

Cálculo estructural

Laminado CFRP

Resistencia mecánica

Unesco Subject/s

3305.05 Tecnología del Hormigón

3305.33 Resistencia de Estructuras

3312.08 Propiedades de Los Materiales

3312.12 Ensayo de Materiales

2211.02 Materiales Compuestos

Abstract

In this work, short reinforced concrete beams reinforced with carbon fibre fabrics externally bonded with epoxy resins (CFRP) have been tested in three-point bending. Two types of carbon fibers were used: high modulus of elasticity and high strength. The beams have been evaluated analytically with two different procedures: (i) using a tie rod and tierod model, this procedure would be the indicated one since all regions are in D-zones and, (ii) using the usual bending theory, as if all regions were in B zones. The results obtained allow: (i) check the influence of this type of reinforcement on the standard beams; (ii) compare the results obtained with both types of fibers; (iii) compare the results obtained with the two analytical procedures used for the analysis and; (iv) compare the analytical results with the experimental results.

In this work, short reinforced concrete beams reinforced with carbon fibre fabrics externally bonded with epoxy resins (CFRP) have been tested in three-point bending. Two types of carbon fibers were used: high modulus of elasticity and high strength. The beams have been evaluated analytically with two different procedures: (i) using a tie rod and tierod model, this procedure would be the indicated one since all regions are in D-zones and, (ii) using the usual bending theory, as if all regions were in B zones. The results obtained allow: (i) check the influence of this type of reinforcement on the standard beams; (ii) compare the results obtained with both types of fibers; (iii) compare the results obtained with the two analytical procedures used for the analysis and; (iv) compare the analytical results with the experimental results.

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