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Strain efficiency of FRP jackets in FRP-confined concrete-filled circular steel tubes

机译:FRP约束混凝土圆钢管中FRP护套的应变效率

摘要

The confinement of concrete columns using fiber-reinforced polymer (FRP) jackets or wraps is a popular structural retrofitting technique. More recently, the benefits of FRP confinement of concrete-filled steel tubes have also been explored by researchers. Failure of such FRP-confined concrete-filled steel tubes is usually governed by the rupture of the FRP jacket in the hoop direction. However, the observed FRP hoop strain at failure (i.e. the hoop rupture strain) is typically lower than the ultimate tensile strain from a flat coupon test. Many factors may contribute to this phenomenon, one of which is the geometrical discontinuities at both the starting and finishing ends of the wrapping process commonly used to form an FRP jacket. This paper examines the effect of these geometrical discontinuities on the hoop rupture strain of FRP jackets in FRP-confined concrete-filled circular steel tubes. Detailed finite element (FE) analyses conducted using both linear elastic and elastic-perfectly plastic adhesive constitutive models are presented. Comparison between the FE predictions and available test results shows that the hoop rupture strains of FRP jackets predicted by FE analysis using an elastic-perfectly plastic adhesive model are in reasonable agreement with the test results. The influence of parameters such as the FRP thickness, FRP orthotropy, FRP elastic modulus, adhesive yield strength, adhesive thickness, and column size are examined.
机译:使用纤维增强聚合物(FRP)护套或包裹物限制混凝土柱是一种流行的结构改造技术。最近,研究人员还探索了FRP约束混凝土钢管的好处。这种用FRP约束的混凝土填充钢管的失效通常是由FRP护套在环向上的断裂所决定的。但是,观察到的FRP失效时的周向应变(即周向破裂应变)通常低于平板试样的极限拉伸应变。许多因素可能导致这种现象,其中之一是通常用于形成FRP护套的包装过程的开始和结束时的几何不连续性。本文研究了这些几何上的不连续性对FRP约束混凝土填充圆形钢管中FRP护套的环向断裂应变的影响。提出了使用线性弹性模型和弹性完美塑料粘合剂本构模型进行的详细有限元分析。有限元预测与可用测试结果之间的比较表明,通过使用弹性完美塑料粘合剂模型进行的有限元分析所预测的FRP护套的环向断裂应变与测试结果基本吻合。检查了诸如FRP厚度,FRP正交性,FRP弹性模量,胶粘剂屈服强度,胶粘剂厚度和色谱柱尺寸等参数的影响。

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