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首页> 外文期刊>Journal of bridge engineering >Seismic Performance of Concrete-Filled FRP Tube Columns for Bridge Substructure
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Seismic Performance of Concrete-Filled FRP Tube Columns for Bridge Substructure

机译:桥梁下部结构的FRP管桩的抗震性能

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摘要

A set of column-footing subassemblies were prepared to investigate construction feasibility and seismic performance of structural joints for concrete-filled fiber reinforced polymer (FRP) tubes (CFFT) as bridge substructure. Based on the common practices of the precast industry and previous research on CFFT, the test matrix included a control reinforced concrete (RC) column and three CFFT columns, all with similar RC footings. The three CFFT columns included a cast-in-place CFFT column with starter bars, a precast CFFT column with grouted starter bars, and a precast CFFT column with unbonded posttensioned rods. The columns were subjected to a constant axial load and a pseudostatic lateral load. All proposed joints proved feasible in construction and robust under extreme load conditions. FRP tube, when secured properly in the footing, showed great influence on the seismic performance of the column by providing both longitudinal reinforcement and hoop confinement to the core concrete. The CFFT columns exhibited significant improvement over traditional RC columns in both ultimate strength and ductility. The study also showed that practices of the precast concrete industry can be easily and effectively implemented for the CFFT column construction.
机译:准备了一组立柱子组件,以研究混凝土填充的纤维增强聚合物(FRP)管(CFFT)作为桥梁子结构的结构节点的施工可行性和抗震性能。根据预制行业的常规做法和以前对CFFT的研究,测试矩阵包括一个控制钢筋混凝土(RC)柱和三个CFFT柱,所有这些柱都具有相似的RC基础。这三个CFFT列包括具有起动杆的现浇CFFT柱,具有灌浆起动杆的预制CFFT柱和具有未粘结后张紧杆的预制CFFT柱。柱承受恒定的轴向载荷和拟静力的横向载荷。事实证明,所有拟议的接头在施工中都是可行的,并且在极端载荷条件下也很坚固。当玻璃纤维管正确固定在基础中时,它通过对芯混凝土提供纵向加强和箍筋约束,对柱的抗震性能产生了很大影响。与传统RC色谱柱相比,CFFT色谱柱在极限强度和延展性方面均表现出显着改进。研究还表明,预制混凝土行业的实践可以轻松有效地用于CFFT柱的施工。

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