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Constitutive Model of Concrete Simultaneously Confined by FRP and Steel for Finite-Element Analysis of FRP-Confined RC Columns

机译:FRP和钢同时约束混凝土的FRP约束RC柱有限元分析模型

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摘要

This paper presents a confined concrete material constitutive model for use in finite-element analysis, which is able to model accurately the combined confinement effect of fiber-reinforced polymers (FRP) and internal steel reinforcement on the structural monotonic, cyclic, and/or dynamic response of reinforced concrete (RC) columns confined with externally wrapped FRP. The proposed material constitutive model for FRP-and-steel confined concrete explicitly models the simultaneous confinement produced by FRP and steel on the core concrete to predict the combined effect on the structural response of circular RC columns. This modified material model is combined with a force-based frame element to predict numerically the load-carrying capacity of FRP-confined RC columns subjected to different loading conditions. Numerical simulations are compared to experimental test data available in the literature and published by different authors. The numerically simulated responses agree very well with the corresponding experimental results. The proposed model is found to predict the ultimate load for FRP-confined RC circular columns with better accuracy than models that do not consider the simultaneous confinement effects on FRP and steel, particularly for columns subjected to concentric axial loads. (c) 2018 American Society of Civil Engineers.
机译:本文提出了一种用于有限元分析的承压混凝土材料本构模型,该模型能够准确地建模纤维增强聚合物(FRP)和内部钢筋对结构单调,循环和/或动力的组合约束作用外部包裹FRP的钢筋混凝土(RC)柱的响应。所提出的FRP和钢承压混凝土的材料本构模型明确地模拟了FRP和钢在核心混凝土上产生的同时承压,以预测对圆形RC柱结构响应的综合影响。该修改后的材料模型与基于力的框架元素相结合,以数字方式预测在不同荷载条件下FRP约束的RC柱的承载能力。将数值模拟与文献中可用并由不同作者发表的实验测试数据进行比较。数值模拟的响应与相应的实验结果非常吻合。与不考虑同时对FRP和钢的约束作用的模型(特别是承受同心轴向载荷的柱子)的模型相比,拟议的模型可以更好地预测FRP约束的RC圆形柱的极限载荷。 (c)2018年美国土木工程师学会。

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