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Design models for circular and square RC columns confined with GFRP sheets under axial compression

机译:GFRP约束的圆形和方形RC柱在轴向压缩下的设计模型

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The confinement of reinforced concrete structural elements can significantly increase their strength and ductility. This motivated numerous research works using different materials, among which are composites. A significant number of constitutive models developed to predict the behaviour of columns confined with fiber polymer sheets have been proposed. Nonetheless, the existing design-oriented models were mainly calibrated for carbon fiber based materials. In the research presented in this paper, sixty experimental results of concrete columns confined with glass fiber reinforced polymers under quasi-static monotonic loading were analysed. This made it possible to calibrate the parameters of a design-oriented model for the prediction of the response of confined concrete columns, with both circular and square cross-sections. The comparison of the proposed model and of an analysis-oriented model with experimental results is presented. The results of the former model show good correlation with experimental data and are generally more accurate than those of the analysis-oriented model considered.
机译:限制钢筋混凝土结构元件可以显着提高其强度和延展性。这激发了许多使用不同材料的研究工作,其中包括复合材料。已经提出了许多本构模型,用于预测用纤维聚合物板约束的柱的行为。但是,现有的面向设计的模型主要针对碳纤维基材料进行了校准。在本文的研究中,分析了玻璃纤维增​​强聚合物约束的混凝土柱在准静态单调荷载下的六十个试验结果。这样就可以校准面向设计的模型的参数,以预测圆形和正方形截面的承压混凝土柱的响应。将提出的模型与面向分析的模型与实验结果进行了比较。前一个模型的结果与实验数据显示出良好的相关性,并且通常比所考虑的面向分析的模型更为准确。

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