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Hollow-Core FRP-Concrete-Steel Tubular Columns Subjected to Seismic Loading

机译:空心芯FRP - 混凝土钢管柱经受地震载荷

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This paper describes the behavior of precast hollow-core fiber-reinforced polymer (FRP)-concrete-steel columns (HC-FCS) under combined axial and lateral loading. The HC-FCS column consists of a concrete wall sandwiched between an inner steel tube and an outer FRP tube. This study investigated two large-scale columns: the traditional reinforced concrete (RC) and the HC-FCS column. The steel tube of the HC-FCS column was embedded into the footing while the FRP tube was stopped at the top of the footing level (i.e., the FRP tube provided confinement only). The hollow steel tube provided the only reinforcement for shear and flexure inside the HC-FCS column. The FRP in HC-FCS ruptured at a lateral drift of 15.2%, while the RC column displayed a 10.9% lateral drift at failure. The RC column failed due to rebar rupture when the moment capacity dropped more than 20%. The HC-FCS failed gradually with concrete compression failure and steel local buckling followed by FRP rupture. Finite element (FE) analysis was conducted using LS-DYNA to develop a static cyclic analysis of a three-dimensional HC-FCS model. The FE results mirrored the experimental results. The bending strength of HC-FCS columns could easily be calculated with a high degree of accuracy using a sectional analysis based on Navier-Bernoulli's assumptions and strain compatibility concepts.
机译:本文介绍了在组合轴向和横向载荷下预制空心芯纤维纤维增强聚合物(FRP) - 钢柱(HC-FCS)的行为。 HC-FCS柱由夹在内钢管和外FRP管之间的混凝土墙组成。本研究调查了两种大型柱:传统的钢筋混凝土(RC)和HC-FCS柱。 HC-FCS柱的钢管嵌入到脚上,同时将FRP管停在基位水平的顶部(即,FRP管仅提供限制)。中空钢管仅为HC-FCS柱内的剪切和弯曲提供了唯一的加强件。 HC-FCS中的FRP在横向漂移中破裂15.2%,而RC柱在故障时显示出10.9%的横向漂移。当机芯跌幅超过20%时,RC列由于钢筋破裂而失败。 HC-FCS逐渐失效,用混凝土压缩失效和钢局部屈曲,然后进行FRP破裂。使用LS-DYNA进行有限元(Fe)分析,以产生三维HC-FCS模型的静态循环分析。 Fe结果反映了实验结果。使用基于Navier-Bernoulli的假设和应变兼容性概念的截面分析,可以通过高精度来轻松计算HC-FCS列的弯曲强度。

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