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首页> 外文期刊>Journal of Composites for Construction >Performance-Based Seismic Retrofit Strategy for Existing Reinforced Concrete Frame Systems Using Fiber-Reinforced Polymer Composites
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Performance-Based Seismic Retrofit Strategy for Existing Reinforced Concrete Frame Systems Using Fiber-Reinforced Polymer Composites

机译:现有性能的纤维增强聚合物复合材料框架结构基于性能的抗震改造策略

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摘要

The feasibility and efficiency of a seismic retrofit intervention using externally bonded fiber-reinforced polymer composites on existing reinforced concrete frame systems, designed prior to the introduction of modern standard seismic design code provisions in the mid-1970s, are herein presented, based on analytical and experimental investigations on beam-column joint subassemblies and frame systems. A multilevel retrofit strategy, following hierarchy of strength considerations, is adopted to achieve the desired performance. The expected sequence of events is visualized through capacity-demand curves within M-N performance domains. An analytical procedure able to predict the enhanced nonlinear behavior of the panel zone region, due to the application of CFRP laminates, in terms of shear strength (principal stresses) versus shear deformation, has been developed and is herein proposed as a fundamental step for the definition of a proper retrofit solution. The experimental results from quasi-static tests on beam-column subassemblies, either interior and exterior, and on three-storey three-bay frame systems in their as-built and CFRP retrofitted configurations, provided very satisfactory confirmation of the viability and reliability of the adopted retrofit solution as well as of the proposed analytical procedure to predict the actual sequence of events.
机译:根据分析和分析,本文介绍了在1970年代中期引入现代标准抗震设计规范之前设计的,在现有钢筋混凝土框架系统上使用外部粘结的纤维增强聚合物复合材料进行地震改造干预的可行性和效率。梁柱联合组件和框架系统的实验研究。遵循强度考虑的层次结构,采用了多级改造策略,以实现所需的性能。预期的事件序列通过M-N性能域内的容量需求曲线可视化。已经开发出了一种分析程序,该程序能够预测由于CFRP层压板的应用而导致的面板区域区域增强的非线性行为,这是抗剪强度(主应力)与剪切变形之间的关系,在此提出了一种分析程序定义适当的改造解决方案。准静态测试对梁柱子组件(内部和外部)以及三层三托架框架系统在其建成和CFRP改造配置中的实验结果,非常令人满意地证实了其可行性和可靠性。采用改造解决方案以及拟议的分析程序来预测事件的实际顺序。

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