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混雜FRP加固腐蝕鋼筋混凝土圓柱基于位移性能的抗震設計

Displacement-based seismic design of reinforced concrete corroded circular columns strengthened with hybrid FRP

  • 摘要: 采用簡化的雙線性纖維增強聚合物(FRP)約束混凝土應力-應變曲線模型,對地震荷載作用下的混雜FRP約束完好混凝土圓柱進行了近似的截面延性分析,再從鋼筋有效截面面積的減少、鋼筋力學性能的降低和鋼筋-混凝土黏結界面的弱化三個方面考慮鋼筋腐蝕對截面延性的影響,建立了計算混雜FRP加固腐蝕混凝土圓柱潛在塑性鉸區延性的簡單適用模型,并編寫了無需迭代的混雜FRP加固腐蝕混凝土柱基于位移性能的抗震設計程序.

     

    Abstract: A simple bilinear stress-strain model of fiber-reinforced polymer(FRP) confined concrete was used to analyze the approximate cross-sectional ductility of undamaged circular columns strengthened with hybrid FRP under seismic loads.The effect of reinforcement corrosion on the sectional ductility was considered by the loss of rebar cross-sectional area,the reduction of rebar's mechanical properties and the degradation of interface bonding between rebar and concrete.Then,a simple analytical model was established to estimate the ductility of potential plastic hinge regions.Finally,a non-iterative displacement-based seismic design program for reinforced concrete corroded columns strengthened with hybrid FRP was presented on the basis of the simple analytical model.

     

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