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Behavior and modeling of fiberreinforced polymer-confined concrete in elliptical columns

机译:椭圆形柱中纤维增强聚合物约束混凝土的行为与建模

摘要

Conversion of rectangular columns into elliptical columns (i.e. shape modification) followed by fiber-reinforced polymer jacketing provides an attractive alternative strengthening method than direct fiber-reinforced polymer jacketing of rectangular reinforced concrete columns (with corner rounding). For this method to be widely used in practice, a design method for the fiber-reinforced polymer jacket needs to be developed, and the key to such a design method is a reliable and yet relatively simple stress–strain model for fiber-reinforced polymer-confined concrete in elliptical reinforced concrete columns. This article presents a combined experimental and finite element study from which a stress–strain model for fiber-reinforced polymer-confined concrete in elliptical columns was derived. The article first presents the experimental program designed to examine the effects of key parameters. The accuracy of a finite element model for fiber-reinforced polymer-confined elliptical concrete columns is then demonstrated through comparisons with the test results. Finally, on the basis of the test data as well as the numerical results obtained with the verified finite element model, a simple and accurate stress–strain model for fiber-reinforced polymer-confined concrete in elliptical columns is formulated for use in design.
机译:将矩形柱转换为椭圆形柱(即形状修改),然后进行纤维增强的聚合物护套,比矩形增强混凝土柱的直接纤维增强的聚合物护套(带有圆角)提供了一种有吸引力的替代方法。为了使该方法在实践中得到广泛应用,需要开发一种纤维增强聚合物护套的设计方法,而这种设计方法的关键是可靠而相对简单的纤维增强聚合物护套应力应变模型。椭圆钢筋混凝土柱中的承压混凝土。本文提出了一项实验与有限元相结合的研究,由此得出了椭圆形柱中纤维增强聚合物约束混凝土的应力-应变模型。本文首先介绍了旨在检查关键参数影响的实验程序。通过与试验结果的比较,证明了纤维增强聚合物约束椭圆混凝土柱的有限元模型的准确性。最后,根据测试数据以及通过验证的有限元模型获得的数值结果,制定了一种简单,准确的椭圆柱纤维增强聚合物约束混凝土应力-应变模型,用于设计。

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