gfrp -钢筋混凝土混合剪力墙滞回性能试验研究

O. Amer
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引用次数: 0

摘要

钢筋易受腐蚀是影响侵蚀环境下混凝土结构整体性能和耐久性的一个严重问题。使用替代玻璃纤维增强聚合物(GFRP)棒的兴趣在于其耐腐蚀性和更高的抗拉强度与重量比。然而,关于gfrp加固墙体抗震性能的实验结果很少。本文对钢-玻璃钢混合剪力墙的滞回性能进行了研究,为此类剪力墙在地震荷载作用下提供了有价值的实验依据。对6座钢+玻璃钢配筋的钢筋混凝土剪力墙进行了拟静力侧向反循环荷载试验。3个剪力墙采用GFRP筋作为纵向和横向配筋,2个剪力墙采用GFRP-钢筋混合配筋,腹板配筋比例不同。采用普通钢-钢筋混凝土剪力墙作为参考试件,验证了GFRP作为配筋的性能。结果表明:gfrp -钢筋混凝土细长墙体在破坏前具有稳定的滞回响应和轻微的残余漂移;随着GFRP腹板配筋率的增加,残余变形减小,承载力增大,侧移强度增大。GFRP和GFRP-钢复合加固墙体的基本周期可以达到破坏前的两倍以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hysteretic Performance of Hybrid GFRP-Steel Reinforced Concrete Shear Walls: An Experimental Investigation
The vulnerability of steel reinforcement to corrosion is a severe problem affecting the overall performance and durability of concrete structures in aggressive environments. The interest in using alternative Glass fibre-reinforced polymer (GFRP) bars lies in their corrosion resistance and higher tensile strength-to-weight ratio. Nevertheless, experimental results on the seismic behaviour of GFRP-reinforced walls are scarce. This paper investigates the hysteretic performance of hybrid steel-GFRP reinforced concrete shear walls to provide valuable experimental evidence for such walls under seismic loading. Six RC shear walls with steel and GFRP reinforcement were tested under pseudo-static reversed-cyclic lateral load. Three shear walls were reinforced by GFRP bars as longitudinal and transversal reinforcement, and two walls were reinforced with hybrid GFRP-steel bars with different ratios of web reinforcement. A reference specimen, ordinary steel-RC shear walls, was also introduced to certify the capability of GFRP as reinforcement bars. The results indicated that the GFRP-reinforced concrete slender walls had a stable hysteretic response and slight residual drift up to failure. Lower residual deformations, higher displacement capacity, and increased lateral strength could be observed with the GFRP web reinforcement ratio increase. Moreover, the fundamental period of GFRP and hybrid GFRP-steel reinforced walls can reach more than twice its original value prior to failure.
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