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Toward the Performance-Based Design of Confined Concrete

机译:朝着狭窄混凝土的性能为基础的设计

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This paper summarizes results from a comprehensive research program that aims at developing rational guidelines for the design of confinement reinforcement in concrete columns. The first part of the paper briefly introduces an analytical model for confined concrete in tied columns. The model is based on the results of testing 24 square columns with various tie configurations under concentric compression. The second part presents results from square columns tested under cyclic flexure and shear, and constant axial load simulating earthquake loads. The specimens tested included normal-strength concrete (NSC) and high-strength concrete (HSC) columns confined by steel and NSC columns confined by fiber-reinforced polymers (FRP). Performance-based procedures for the design of confinement reinforcement in these columns are proposed in light of the experimental results and analytical models. The design procedures incorporate various ductility parameters that include energy dissipation capacity, ductility factors, and cumulative ductility indices in addition to the type, amount, and configuration of the confinement reinforcement and the level of axial load. The areas in which further research is needed are also discussed.
机译:本文总结了一项综合研究计划的结果,旨在制定具体柱上监禁加固设计的合理指南。本文的第一部分简要介绍了捆绑柱中限制混凝土的分析模型。该模型基于测试24平方柱的结果,在同心压缩下具有各种绑带配置。第二部分呈现在循环弯曲和剪切下测试的方柱的结果,以及模拟地震载荷的恒定轴向载荷。测试的标本包括由钢和NSC柱限制的正常强度混凝土(NSC)和高强度混凝土(HSC)柱,由纤维增强聚合物(FRP)限制。根据实验结果和分析模型,提出了基于绩效的限制加固设计的程序。设计过程包括除了禁闭增强的类型,量和配置之外的各种延展性参数,包括能量耗散容量,延展性因子和累积延展性指数以及轴向载荷的水平。还讨论了进一步研究的领域。

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