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A Modified Model for Deflection Calculation of Reinforced Concrete Beam with Deformed GFRP Rebaropen access

Authors
Ju, M.Oh, H.Lim, J.Sim, J.
Issue Date
2016
Publisher
Hindawi Limited
Citation
International Journal of Polymer Science, v.2016
Indexed
SCIE
SCOPUS
Journal Title
International Journal of Polymer Science
Volume
2016
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/16620
DOI
10.1155/2016/2485825
ISSN
1687-9422
1687-9430
Abstract
The authors carried out experimental and analytical research to evaluate the flexural capacity and the moment-deflection relationship of concrete beams reinforced with GFRP bars. The proposed model to predict the effective moment of inertia for R/C beam with GFRP bars was developed empirically, based on Branson's equation to have better accuracy and a familiar approach to a structural engineer. For better prediction of the moment-deflection relationship until the ultimate strength is reached, a nonlinear parameter (k) was also considered. This parameter was introduced to reduce the effect of the cracked moment of inertia for the reinforced concrete member, including a lower reinforcement ratio and modulus of elasticity of the GFRP bar. In a comparative study using six equations suggested by others, the proposed model showed better agreement with the experimental test results. It was confirmed that the empirical modification based on Branson's equation was valid for predicting the effective moment of inertia of R/C beams with GFRP bar in this study. To evaluate the generality of the proposed model, a comparative study using previous test results from the literature and the results from this study was carried out. It was found that the proposed model had better accuracy and was a familiar approach to structural engineers to predict and evaluate the deflection behavior. ? 2016 Minkwan Ju et al.
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건설환경공과대학 (건설시스템공학과)
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