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Modelling of rectangular RC columns strengthened with FRP

机译:FRP加固矩形RC柱的建模

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Existing analytical models for predicting the stress-strain or load-displacement response of fibre-reinforced polymer (FRP)-confined concrete are mostly derived for cylindrical plain concrete columns. In practice, however, typical concrete columns come in various shapes including circular, square, or rectangular and incorporate longitudinal and transverse steel reinforcements. Furthermore, strengthening or repairing is typically done while the column is under service loading. In this paper, an analytical model is proposed to predict the load-displacement response of wall-like (i.e. high aspect ratio) reinforced concrete columns strengthened with FRP wraps with and without sustained loading. The model assumes that the general load-displacement response of the strengthened column consists of two distinct branches: a parabolic ascending branch and a linear descending branch. The ascending branch is influenced by the lateral confining pressure from the transverse reinforcement as well as the FRP wraps, while the descending branch is influenced by the buckling of the longitudinal reinforcement and the failure of the core concrete. Comparisons between model results and experimental results indicate close agreement between the two.
机译:现有的用于预测纤维增强聚合物(FRP)约束混凝土的应力-应变或载荷-位移响应的分析模型主要用于圆柱素混凝土柱。然而,实际上,典型的混凝土柱具有各种形状,包括圆形,正方形或矩形,并包含纵向和横向钢筋。此外,通常在色谱柱承受服务负荷时进行加固或维修。在本文中,提出了一个分析模型来预测用FRP包裹加固的壁状(即高纵横比)钢筋混凝土柱在有载和无载情况下的荷载-位移响应。该模型假定加强柱的一般荷载-位移响应包括两个不同的分支:抛物线上升分支和线性下降分支。上升分支受横向钢筋以及FRP缠绕的侧向约束压力的影响,而下降分支受纵向钢筋的屈曲和核心混凝土的破坏影响。模型结果和实验结果之间的比较表明两者之间的一致性。

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