Abstract
This study presents a design method for hybrid fiber-reinforced-polymer-steel-reinforced concrete beams by an optimized analysis of the cross section. First, the relationships among the energy consumption, the bearing capacity, and the reinforcement ratio are analyzed; then, the parameters of the cross section are determined. Comparisons between the available theoretical and experimental results show that the designed hybrid fiber-reinforced-polymer-steel-reinforced concrete beams with a low area ratio between the fiber-reinforced polymer and the steel reinforcement could meet the required carrying capacity and exhibited high ductility.
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Yang, Y., Sun, Z. Y., Wu, G., Cao, D. F., & Zhang, Z. Q. (2020). Flexural capacity and design of hybrid FRP-steel-reinforced concrete beams. Advances in Structural Engineering, 23(7), 1290–1304. https://doi.org/10.1177/1369433219894236
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