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Deformation Capacity of FRP Confined Reinforced Concrete Circular Columns under Simulated Seismic Loading
Authors:Gu Dong-sheng  WU Gang  WU Zhi-shen and WEI Yang
Institution:College of Environmental and Civil Engineering, Jiangnan University, Wuxi 214122, Jiangsu,P.R.China;Key Laboratory of Concrete and Pre-stressed Concrete Structures of the Ministry of Education, Southeast University, Nanjing 210096, P.R.China;Key Laboratory of Concrete and Pre-stressed Concrete Structures of the Ministry of Education, Southeast University, Nanjing 210096, P.R.China;Key Laboratory of Concrete and Pre-stressed Concrete Structures of the Ministry of Education, Southeast University, Nanjing 210096, P.R.China;College of Civil Engineering,Nanjiang Forestry University,Nanjing 210037.P.R.China
Abstract:The accurate calculation of the deformation capacity of structures is very important to performance-based seismic design, which satisfies the explicit deformation demands. The method to evaluate drift capacity of fiber reinforced polymer (FRP) confined reinforced concrete circular columns under simulated seismic loading is focused. Firstly, the moment-curvature relationship of FRP confined sections of reinforced concrete (RC) circular columns is simulated by numerical analysis. It is found that the calculated ultimate curvature is significantly less than the test result, and the difference is controlled by the axial load ratio of the tested columns. According to the numerical and the test results, an equation is proposed to modify the calculated ultimate curvature. Based on this, the drift capacity can be predicted with the equivalent plastic hinge method. The calculated result agrees well with the test result when FRP amount is low, but it is significantly larger when FRP amount increases. Finally, the main parameters exerting influences on the drift capacity of the FRP-confined RC circular column are analyzed.
Keywords:FRP  confinement  seismic performance  deformation capacity
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