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AXIAL STRESS-STRAIN BEHAVIOR MODEL OF FRP-CONFINED CONCRETE: A STATE OF THE ART REVIEW

机译:FRP约束混凝土的轴向应力-应变行为模型:最新进展

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Fiber reinforced polymer (FRP) composites are often used to confine concrete for seismic strengthening of existing reinforced concrete (RC) columns and concrete filled FRP tubes as earthquake-resistant columns in new structures. For the safety and serviceability of these structural elements, it is essential to understand the behavior of FRP confinement at the element level. This is often done by observing the stress-strain behavior of FRP-confined concrete under axial compression. In the past two decades, many researchers conducted extensive experimental and analytical investigations in order to understand and predict the stress-strain behavior of FRP-confined concrete under axial compression. This paper presents an extensive review of the previously published literature on the axial stress-strain behavior of FRP-confined concrete in circular concrete sections. The reviewed models are categorized into two broad groups; design orientated models (DOMs) and analysis oriented models (AOMs). In the final part of the paper, a critical discussion is presented by comparing the constitutive models with the experimental results. The essential factors that influence the overall performance of the models are also highlighted.
机译:纤维增强聚合物(FRP)复合材料通常用于限制混凝土,以抗震加固现有的钢筋混凝土(RC)柱和混凝土填充的FRP管,作为新结构中的抗震柱。为了这些结构元件的安全性和可维修性,必须了解在元件级别上的FRP约束行为。这通常是通过观察FRP约束混凝土在轴向压缩下的应力应变行为来完成的。在过去的二十年中,许多研究人员进行了广泛的实验和分析研究,以了解和预测FRP约束混凝土在轴向压缩下的应力应变行为。本文对以前发表的有关圆形混凝土截面中FRP约束混凝土的轴向应力-应变行为的文献进行了广泛的综述。审查的模型分为两大类:面向设计的模型(DOM)和面向分析的模型(AOM)。在本文的最后部分,通过将本构模型与实验结果进行比较,提出了重要的讨论。还强调了影响模型整体性能的基本因素。

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