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Title: Deformations of FRP–Concrete Composite Beam: Experiment and Numerical Analysis
Authors: Gribniak, Viktor
Misiūnaitė, Ieva
Rimkus, Arvydas
Sokolov, Aleksandr
Šapalas, Antanas
Keywords: concrete composite
flexural tests
deformations
residual stiffness
numerical model
tension-stiffening
fracture energy
Issue Date: 2019
Publisher: MDPI
Citation: Gribniak, V.; Misiūnaitė, I.; Rimkus, A.; Sokolov, A.; Šapalas, A. Deformations of FRP–Concrete Composite Beam: Experiment and Numerical Analysis. Appl. Sci. 2019, 9, 5164.
Series/Report no.: 9;23
Abstract: Advanced materials have been created for structural application during the past decades. Engineers, however, faced severe problems due to the absence of a reliable technique for ensuring the required structural properties minimising the amount of material used. A lack of constitutive models for the analysis of the structural systems also exists. Residual stiffness of flexural concrete elements subjected to short-term load is the focus of this research. Tension-stiffening models were developed to represent the deformation response of the members reinforced with internal bars. This study examines the suitability of the tension-stiffening modelling approach for simulating the deformation behaviour of the composite specimens comprising glass fibre-reinforced polymer (GFRP) pultruded profile adhesively bonded to the tensile surface of the concrete beam. The study employs a nonlinear finite element approach and analytical model to simulate the deformation behaviour of the flexural elements.
Description: This article belongs to the Section Civil Engineering
URI: http://dspace.vgtu.lt/handle/1/3915
ISSN: 2076-3417
Appears in Collections:Moksliniai straipsniai / Research articles

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