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Seismic Experiments and Analysis of Repaired Bridge Columns Using CFRP Donut

机译:CFRP甜甜圈修复桥柱的抗震试验与分析

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Two severely damaged concrete column-to-cap beam specimens were successfully repaired, using a carbon fiber-reinforced polymer (CFRP) cylindrical shell, non-shrink repair concrete, and headed steel bars. The first cast-in-place specimen experienced concrete crushing and longitudinal bars fracture/buckling; for the second precast specimen, the column was completely separated from the cap beam. In this paper, two analytical models, Model Fiber and Model Rotational Spring (RS), simulating the seismic performance of the repaired specimens are proposed. In Model Fiber, plasticity considering bond-slip effects was distributed over the defined plastic hinge length of the nonlinear beam-column element. In Model RS, a non-linear rotational spring was used to consider the concentrated plasticity located at the repaired cross-section. Low-cycle fatigue of the damaged column longitudinal steel bars was included in the analytical models. Simulations show that the analytical results, in terms of hysteretic response and moment-rotation, are in very good agreement with the experimental results. Model Fiber performed better for predicting the pinching effect in the hysteretic response of the repaired cast-in-place specimen; Model RS performed better for matching the hysteresis curves of the repaired precast concrete specimen. In addition, Model Fiber was able to predict the local response of the columns including the fracture of longitudinal bars due to low-cycle fatigue.
机译:使用碳纤维增强聚合物(CFRP)圆柱壳,非收缩修复混凝土和有头钢筋,成功修复了两个严重受损的柱状至帽梁混凝土标本。第一个现浇试样经历了混凝土压碎和纵向钢筋断裂/屈曲。对于第二个预制样品,将色谱柱与顶盖梁完全分开。本文提出了两种分析模型,分别是纤维模型和旋转弹簧模型(RS),以模拟修复后试件的抗震性能。在模型纤维中,考虑了粘结滑移效应的可塑性分布在非线性梁柱单元的定义的塑料铰链长度上。在RS型中,使用非线性旋转弹簧来考虑位于修复横截面处的集中塑性。分析模型中包括了损坏的立柱纵向钢筋的低周疲劳。仿真表明,在滞后响应和力矩旋转方面的分析结果与实验结果非常吻合。纤维模型在预测修复的现浇试样的滞后响应中的夹紧效果方面表现更好; RS模型在匹配修复的预制混凝土标本的磁滞曲线方面表现更好。此外,Model Fiber能够预测圆柱体的局部响应,包括由于低周疲劳而导致的纵向钢筋断裂。

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