Experimental research on the behavior of circular SFRC columns reinforced longitudinally by GFRP rebars

被引:2
作者
Saffariana, Iman [1 ]
Atefatdoost, Gholam Reza [1 ]
Hosseinib, Seyed Abbas [2 ]
Shahryarib, Leila [3 ]
机构
[1] Islamic Azad Univ, Dept Civil Engn, Estahban Branch, Estahban, Iran
[2] Univ Yasuj, Fac Technol & Min, Choram, Iran
[3] Islamic Azad Univ, Dept Civil Engn, Shiraz Branch, Shiraz, Iran
关键词
axial compressive load; ductility index (DI); GFRP rebars; load-strain curves; theoretical equations; CONCRETE COLUMNS; STEEL FIBER; BARS; STRENGTH; MODEL;
D O I
10.12989/cac.2023.31.6.513
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
This research presents the experimental and theoretical evaluations on circular steel-fiber-reinforced-concrete (SFRC) columns reinforced by glass-fiber-reinforced-polymer (GFRP) rebar under the axial compressive loading. Test programs were designed to investigate and compare the effect of different parameters on the structural behavior of columns by performing tests. Theses variables included conventional concrete (CC), fiber concrete (FC), steel/GFRP longitudinal rebars, and transversal rebars configurations. A total of 16 specimens were constructed and categorized into four groups in terms of different rebar-concrete configurations, including GFRP-rebar-reinforced-CC columns (GRCC), GFRP-rebar-reinforced-FC columns (GRFC), steel-rebar-reinforced-CC columns (SRCC) and steel-rebar-reinforced-FC columns (SRFC). Experimental observations displayed that failure modes and cracking patterns of four groups of columns were similar, especially in pre-peak branches of load-deflection curves. Although the average ultimate axial load of columns with longitudinal GFRP rebars was obtained by 17.9% less than the average ultimate axial load of columns with longitudinal steel rebars, the average axial ductility index (DI) of them was gained by 10.2% higher than their counterpart columns. Adding steel fibers (SFs) into concrete led to the increases of 7.7% and 6.7% of the axial peak load and the DI of columns than their counterpart columns with CC. The volumetric ratio had greater efficiency on peak loads and DIs of columns than the type of transversal reinforcement. A simple analytical equation was proposed to predict the axial compressive capacity of columns by considering the axial involvement of longitudinal GFRP rebars, volumetric ratio, and steel spiral/hoop rebar. There was a good correlation between test results and predictions of the proposed equation.
引用
收藏
页码:513 / 525
页数:13
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