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首页> 外文期刊>Journal of Composites for Construction >Lateral Strain-To-Axial Strain Hodel for Concrete-Filled FRP Tube Columns Incorporating Interface Gap and Prestressed Confinement
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Lateral Strain-To-Axial Strain Hodel for Concrete-Filled FRP Tube Columns Incorporating Interface Gap and Prestressed Confinement

机译:结合界面间隙和预应力约束的FRP钢管混凝土柱的横向应变-轴向应变Hodel

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摘要

The use of fiber-reinforced polymer (FRP) composites as external confi nement in the manufacture of high-performance concrete-filled FRP tube (CFFT) columns has recently gained significant research attention. Accurate prediction of the lateral strain-to-axial strain relationship is of vital importance in predicting member behavior under various loading conditions, as the confinement pressure created by the FRP confining shell on the concrete core depends on the lateral expansion of concrete. A recent review of the literature revealed that while lateral-to-axial strain models exist for FRP-confined concrete, a model that is applicable to CFFT columns with prestressed FRP tubes or an interface gap caused by radial shrinkage of concrete is not yet available. To address this research gap, this study presents an accurate lateral-to-axial strain model based on the experimental observations from two test databases. Analyses ofthe experimental databases that consisted of 24 specimens manufactured with FRP-to-concrete interface gap and a further 23 specimens prepared with lateral prestress is presented and discussed. Based on close examination of the ultimate conditions of the column specimens and hoop strain development on the FRP confining shell, expressions to predict strain-reduction factors and lateral-to-axial strain relationships are proposed. The comparison of the proposed model predictions with the experimental test results of specimens prepared with an interface gap or prestressed FRP tubes shows good agreement, with average absolute errors (AAE) below 11% in all predictions. (c) 2017 American Society of Civil Engineers.
机译:在高性能混凝土填充FRP管(CFFT)柱的制造中,纤维增强聚合物(FRP)复合材料作为外部约束的使用最近引起了广泛的研究关注。精确预测横向应变与轴向应变的关系对于预测各种载荷条件下的构件行为至关重要,因为FRP约束壳在混凝土芯上产生的约束压力取决于混凝土的横向膨胀。最近的文献回顾显示,尽管存在FRP约束混凝土的横向至轴向应变模型,但尚无适用于具有预应力FRP管的CFFT柱或混凝土径向收缩引起的界面间隙的模型。为了弥补这一研究空白,本研究基于来自两个测试数据库的实验观察结果,提供了一个精确的横向至轴向应变模型。提出并讨论了实验数据库的分析,该数据库由24个用FRP到混凝土界面间隙制造的试样和另外23个用侧向预应力制备的试样组成。在仔细检查柱试样的最终条件和FRP约束壳上的箍应变发展的基础上,提出了预测应变减小因子和横向应变与轴向应变关系的表达式。拟议的模型预测与使用界面间隙或预应力FRP管制备的样品的实验测试结果的比较显示出良好的一致性,在所有预测中平均绝对误差(AAE)均低于11%。 (c)2017年美国土木工程师学会。

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