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Stress-Strain Model for FRP-Confined Concrete in Eccentrically Loaded Circular Columns

机译:偏心装载圆柱中FRP限制混凝土的应力 - 应变模型

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摘要

Extensive research has been conducted on FRP (fiber-reinforced polymers)-confined concrete columns under concentric compression, leading to many stress-strain models for such concrete. These concentric-loading (CL) stress-strain models have generally been used in the analysis of both concentrically and eccentrically loaded columns. Existing tests, however, have shown that eccentrically loaded FRP-confined concrete columns exhibit some behavioral aspects that cannot be closely predicted using a CL stress-strain model. This paper presents an in-depth investigation into this problem using an advanced three-dimensional (3D) finite element (FE) approach. The stress-strain response of concrete is shown to vary significantly over the section, and the direct use of a single CL stress-strain model for the entire section in the analysis of eccentrically loaded columns may lead to significant errors in the prediction of ultimate displacement/curvature. A stress-strain model for the confined concrete at the extreme compression fiber of the section is also shown to provide a relatively simple and much more accurate option for predicting the ultimate displacement/curvature of eccentrically loaded columns. Based on this conclusion, a so-called eccentricity-dependent (EccD) stress-strain model is proposed based on a comprehensive parametric study using the FE approach. The proposed model can be directly used in a section analysis or a theoretical column model and is proven to provide much more accurate predictions of the ultimate displacement/curvature of test columns than existing CL stress-strain models. (c) 2019 American Society of Civil Engineers.
机译:在同心压缩下的FRP(纤维增强聚合物)和混凝土柱上已经进行了广泛的研究,这是许多用于这种混凝土的应力 - 应变模型。这些同心负载(CL)应力 - 应变模型通常用于分析同心和偏心的柱的分析。然而,现有的测试已经表明,偏心加载的FRP限制混凝土柱具有不使用CL应变 - 应变模型密切预测的一些行为方面。本文采用先进的三维(3D)有限元(FE)方法对此问题进行了深入的调查。混凝土的应力 - 应变响应显示在该部分上显着变化,并且在偏心加载的柱分析中,整个部分的单个Cl应激应变模型的直接使用可能导致最终位移预测中的显着误差/曲率。还示出了该截面极端压缩光纤的限制混凝土的应力 - 应变模型,提供了一种相对简单和更准确的选择,用于预测偏心加载柱的最终位移/曲率。基于该结论,基于使用Fe方法的综合参数研究提出了一种所谓的偏心依赖性(ECCD)应力 - 应变模型。所提出的模型可以直接用于截面分析或理论柱模型,并且被证明可以提供比现有的CL应变模型的最终位移/曲率的更准确的预测。 (c)2019年美国土木工程学会。

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