首页> 外文会议>Canadian Society for Civil Engineering annual conference >EFFECT OF SPACING OF TRANSVERSE REINFORCEMENT ON THE LAPPED SPLICED GFRP-RC COLUMNS SUBJECTED TO CYCLIC-REVERSED LOADS
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EFFECT OF SPACING OF TRANSVERSE REINFORCEMENT ON THE LAPPED SPLICED GFRP-RC COLUMNS SUBJECTED TO CYCLIC-REVERSED LOADS

机译:横向加固对循环载荷的横裂GFRP-RC柱间距的影响

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Recently, the non-corrodible fibre-reinforced polymer (FRP) materials have been used successfully as reinforcement for concrete structures. However, the behaviour of glass (G) FRP-reinforced concrete (RC) columns under seismic loading has not been explored yet. This paper presents the results of an experimental program that investigates the contribution of GFRP transverse reinforcement to the confinement of concrete core in lap-spliced GFRP-RC columns. Three full-scale column specimens were constructed and tested to failure under quasi-static cyclic-reversed loads. All specimens were reinforced with GFRP longitudinal bars and transverse stirrups. The columns had 350-mm square cross section and 1850-mm cantilever length. Each column was cast on heavily steel-RC footing measuring 1400×1400×600 mm~3, which was constructed to simulate rotational fixity of the column and to force the failure to occur in the column. The splice length for each column was equal to sixty times the diameter of the longitudinal column reinforcement. The test variable was the spacing between the transverse GFRP reinforcement (75,100 and 150 mm). Test results are presented in terms of mode of failure, load-drift diagrams, energy dissipation, ultimate capacity and code comparison, if applicable. The results showed that, decreasing the spacing of spiral reinforcement improved both the strength and the deformability of the columns. Moreover, the requirement of the Canadian standard for FRP-RC buildings related to the amount of confinement provided by GFRP transverse reinforcement is adequate to ensure stability of the longitudinal bars.
机译:最近,不可腐蚀性纤维增强聚合物(FRP)材料已成功使用作为混凝土结构的增强。然而,尚未探讨玻璃(G)FRP泛燃混凝土(RC)柱的行为尚未探讨。本文介绍了一个实验计划的结果,调查GFRP横向加强对循环GFRP-RC柱中混凝土芯的贡献。构建了三个全尺寸柱样本并测试了在准静态环状载荷下的故障。用GFRP纵向杆和横向搅拌加固所有标本。柱子具有350毫米方横截面和1850毫米的悬臂长。每个柱子被施放在钢型钢型脚踏上,测量为1400×1400×600mm〜3,构造成模拟柱的旋转固定性并强制在柱中发生故障。每柱的接头长度等于纵向柱增强的直径的六十倍。测试变量是横向GFRP增强件(75,100和150mm)之间的间距。如果适用,则在故障模式,负载漂移图,能量耗散,终极容量和代码比较方面提出了测试结果。结果表明,降低螺​​旋增强件的间距改善了柱的强度和可变形性。此外,与GFRP横向增强件提供的限制金额的FRP-RC建筑物的加拿大标准的要求足以确保纵向杆的稳定性。

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