Flexural behavior of FRP-HSC-steel double skin tubular beams under reversed-cyclic loading

被引:41
作者
Idris, Yunita [1 ]
Ozbakkaloglu, Togay [1 ]
机构
[1] Univ Adelaide, Sch Civil Environm & Min Engn, Adelaide, SA 5005, Australia
关键词
FRP-concrete-steel composite members; Cantilever beams; Fiber reinforced polymer (FRP); High-strength concrete (HSC); Confinement; Lateral displacement; HIGH-STRENGTH CONCRETE; AXIAL COMPRESSIVE BEHAVIOR; REINFORCED POLYMER TUBES; CONFINED CONCRETE; COLUMNS; PERFORMANCE; SQUARE; MEMBERS;
D O I
10.1016/j.tws.2014.11.003
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This article presents an experimental study on the cyclic behavior of fiber reinforced polymer (FRP)-concrete-steel double skin tubular (DST) cantilever beams, referred to in this article as DSTBs. Four DSTBs constructed of high-strength concrete (HSC) were tested under reversed-cyclic lateral loading. The main parameters under investigation were the size of the inner steel tube, the provision (or absence) of a concrete filling inside the steel tube, and the installation of mechanical connectors in the form of steel rings welded on the inner steel tube. The results indicate that DSTBs exhibit very ductile behavior under reversed-cyclic lateral loading. The results also indicate that the DSTBs with larger inner steel tubes exhibit lower lateral displacement capacities compared to their counterparts with smaller inner steel tubes. It was observed that installation of mechanical connectors on the inner steel tube and concrete-filling the tube both influence the overall behavior and lateral displacement capacity of the DSTBs. Furthermore, the results show that through the use of mechanical connectors the slippage at the interface between the steel tube and surrounding concrete sleeve can be completely eliminated. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:89 / 101
页数:13
相关论文
共 50 条
[31]   Behavior of Hollow-Core FRP-Concrete-Steel Columns under Static Cyclic Flexural Loading [J].
Abdelkarim, Omar I. ;
ElGawady, Mohamed A. ;
Anumolu, Sujith ;
Gheni, Ahmed ;
Sanders, Gregory E. .
JOURNAL OF STRUCTURAL ENGINEERING, 2018, 144 (02)
[32]   Seismic behavior of steel reinforced ECC columns under constant axial loading and reversed cyclic lateral loading [J].
Wu, Chang ;
Pan, Zuanfeng ;
Su, R. K. L. ;
Leung, C. K. Y. ;
Meng, Shaoping .
MATERIALS AND STRUCTURES, 2017, 50 (01)
[33]   FRP-Concrete-Steel Double-Skin Tubular Columns with UHPC/ECC: Concept and Compressive Behavior under Concentric Loading [J].
Chen, G. M. ;
Lin, Z. H. ;
Liu, Q. ;
Lin, Guan ;
Xiong, Y. ;
Guo, Y. Z. .
JOURNAL OF COMPOSITES FOR CONSTRUCTION, 2023, 27 (03)
[34]   Axial Compressive Behavior of FRP-Concrete- Steel Double-Skin Tubular Columns Made of Normal- and High-Strength Concrete [J].
Ozbakkaloglu, Togay ;
Fanggi, Butje Louk .
JOURNAL OF COMPOSITES FOR CONSTRUCTION, 2014, 18 (01)
[35]   Seismic behavior of precast 100 MPa grade HSC frames under reversed cyclic loading [J].
Xue, Weichen ;
Hu, Xinyu ;
Ren, Dongsheng ;
Hu, Xiang .
ENGINEERING STRUCTURES, 2021, 243 (243)
[36]   Flexural behavior of concrete-filled double-skin steel tubular beams after subject to high temperature [J].
Liu, Xiao ;
Xu, Hanwen ;
Wang, Xiaochu ;
Wang, Bing ;
Ma, Lu .
JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2020, 175
[37]   Behavior of hybrid FRP-concrete-steel double-skin tubular columns subjected to cyclic axial compression [J].
Yu, T. ;
Zhang, B. ;
Cao, Y. B. ;
Teng, J. G. .
THIN-WALLED STRUCTURES, 2012, 61 :196-203
[38]   Structural Behavior of Hybrid FRP-Concrete-Steel Double-Skin Tubular Arches: Experiments and Numerical Modeling [J].
Fernando, Dilum ;
de Waal, Leo ;
Jiang, Shuan ;
Teng, J. G. ;
Lin, Guan ;
Li, Xi .
JOURNAL OF COMPOSITES FOR CONSTRUCTION, 2024, 28 (06)
[39]   Behavior of FRP-concrete-steel double skin tubular members under lateral impact: Experimental study [J].
Wang, Rui ;
Han, Lin-Hai ;
Tao, Zhong .
THIN-WALLED STRUCTURES, 2015, 95 :363-373
[40]   Flexural behavior of hybrid FRP-concrete-steel double-skin tubular member T-joints subjected to in-plane bending [J].
Lin, Guan ;
Guo, Yuanze ;
Lin, Xinchao ;
Protchenko, Kostiantyn ;
Zeng, Junjie .
ENGINEERING STRUCTURES, 2025, 340