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首页> 外文期刊>Structural Engineering and Mechanics >Lateral force-displacement ductility relationship of non-ductile squat RC columns rehabilitated using FRP confinement
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Lateral force-displacement ductility relationship of non-ductile squat RC columns rehabilitated using FRP confinement

机译:FRP约束修复的非延性蹲式钢筋混凝土柱的横向力-位移延性关系

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摘要

Post-earthquake reconnaissance and experimental research indicate that squat reinforced concrete (RC) columns in existing buildings or bridge piers are vulnerable to non-ductile shear failure. Recently, several experimental studies were conducted to investigate upgrading the shear resistance capacity of such columns in order to modify their failure mode to ductile one. Among these upgrading methods is the use of fibre-reinforced polymer (FRP) jackets. One of the preferred analytical tools to simulate the response of frame structures to earthquake loading is the lumped plasticity macromodels due to their computational efficiency and reasonable accuracy. In these models, the columns' nonlinear response is lumped at its ends. The most important input data for such type of models is the element's lateral force-displacement backbone curve. The objective of this study is to verify an analytical method to predict the lateral force-displacement ductility relationship of axially and laterally loaded rectangular RC squat columns retrofitted with FRP composites. The predicted relationship showed good accuracy when compared with tests available in the literature.
机译:地震后的侦查和实验研究表明,现有建筑物或桥墩中的蹲式钢筋混凝土(RC)柱易受非延性剪切破坏的影响。最近,进行了一些实验研究来研究提高这种柱的抗剪能力,以将其破坏模式修改为韧性的。这些升级方法包括使用纤维增强聚合物(FRP)护套。用于模拟框架结构对地震荷载响应的首选分析工具之一是集总塑性宏模型,这是由于它们的计算效率和合理的准确性。在这些模型中,列的非线性响应在其末端集中。对于此类模型,最重要的输入数据是单元的横向力-位移主干曲线。这项研究的目的是验证一种分析方法,以预测加装FRP复合材料的轴向和横向荷载矩形RC蹲坐柱的横向力-位移延性关系。与文献中提供的测试相比,预测的关系显示出良好的准确性。

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