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首页> 外文期刊>KSCE journal of civil engineering >Analysis and Design of Seismic Robustness of FRP-Reinforced Frame based on Interlayer Displacement
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Analysis and Design of Seismic Robustness of FRP-Reinforced Frame based on Interlayer Displacement

机译:基于层间位移的FRP加固框架抗震性分析与设计

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For a structure, robustness is a high-level performance index since it takes account of the effects of impact, explosion, earthquake and other instantaneous dynamic actions on the structure safety. In this work, layer is taken as the tie between the column and the frame. Two concepts, namely, layer importance coefficient of the column and layer vulnerability coefficient of the frame, are introduced. Based on these, the method for calculating the seismic robustness is proposed and analyzes the seismic robustness of three FRP-reinforced frame models. The results show that: The robustness of the frame with the 1st layer column reinforced with two layer CFRP (carbon fiber reinforced polymer) (F20RC) and the 1st and 2nd layer column reinforced with one layer CFRP (F11RC), respectively are better than that of the 1st layer column reinforced with one layer CFRP (F10RC). As the intensity of earthquake action increases, the seismic robustness index decreases. When UBC97's acceleration-related parameter C-a = 0.36 and velocity-related parameter C-v = 0.36, the robustness coefficient of the three models F20RC, F11RC, F10RC are 36.5, 37.2, 34.1, respectively. When C-a = 0.6, C-v = 0.6, that of F20RC, F11RC, F10RC are 24.2, 20.4, 19.5, respectively. Finally, the procedure for designing the FRP-reinforced frame based on the seismic robustness is presented and demonstrated.
机译:对于结构而言,稳健性是一项高级性能指标,因为它考虑了冲击,爆炸,地震和其他瞬时动态作用对结构安全性的影响。在这项工作中,层被用作柱子和框架之间的纽带。介绍了两个概念,即列的层重要性系数和帧的层易损性系数。在此基础上,提出了抗震能力的计算方法,并分析了三种FRP加固框架模型的抗震能力。结果表明:分别采用两层CFRP(碳纤维增强聚合物)(F20RC)加固的第一层立柱和使用一层CFRP(F11RC)加固的第一层和第二层立柱的框架的耐用性分别优于:一层CFRP(F10RC)加固的第一层立柱的结构示意图。随着地震作用强度的增加,地震鲁棒性指数降低。当UBC97的加速度相关参数C-a = 0.36和速度相关参数C-v = 0.36时,三个模型F20RC,F11RC,F10RC的鲁棒性系数分别为36.5、37.2、34.1。当C-a = 0.6,C-v = 0.6时,F20RC,F11RC和F10RC的分别为24.2、20.4和19.5。最后,介绍并演示了基于抗震性的FRP加固框架的设计过程。

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