首页> 外文会议>International conference on advanced composite materials in bridges and structures >CYCLIC LOAD BEHAVIOR OF GFRP REINFORCED CONCRETE SHEAR WALL: EXPERIMENTAL APPROACH
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CYCLIC LOAD BEHAVIOR OF GFRP REINFORCED CONCRETE SHEAR WALL: EXPERIMENTAL APPROACH

机译:GFRP钢筋混凝土剪力墙的循环载荷行为:实验方法

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With the establishment of several construction applications of FRP reinforcement, there is a need for a system to resist lateral loads induced from wind and earthquake loads in these constructions. Reinforced concrete shear walls have shown effective performance in resisting lateral loads caused by wind and earthquake loads. Therefore, shear walls are frequently used in parking garages and multi-story buildings exposed to high lateral loading. This research involved testing a shear wall totally reinforced with FRP bars. Early information showed the inapplicability of reinforcing shear walls with FRP, but after overcoming the difficulties encountered, the restilts showed an opposite conclusion. The results obtained demonstrated significantly high utilization levels of the shear wall reinforced with FRP in term of drift, deformability, and failure mode. The large scale shear wall experiment was carried out to examine the strength, stiffness and deformability by observing the degradation in stiffness and strength while resisting in plane reversed loading, and to measure the energy dissipation of the system accounting for the deformability of the shear wall. The shear wall specimen was in the medium-rise wall category where both flexural and shear deformations exist. The specimen was totally reinforced with glass FRP bars to resist flexure, shear, and sliding shear deformations.
机译:随着FRP加固的几种施工应用,需要一种抵抗这些结构中的风力和地震载荷引起的横向载荷的系统。钢筋混凝土剪力墙在抵抗由风和地震载荷引起的横向载荷方面表现出有效性能。因此,剪力墙经常用于停车车库和暴露于高侧向载荷的多层建筑物。这项研究涉及测试与FRP棒完全加固的剪力墙。早期的信息表明,钢筋使用FRP的不适用性,但在克服遇到的困难之后,RESTILTS表现出相反的结论。获得的结果证明了在漂移,可变形性和故障模式的术语中使用FRP加强的剪力壁的显着高利用水平。进行大规模的剪切壁实验,以通过观察刚度和强度的降解而在平面逆转负荷抵抗的同时观察强度,刚度和变形性,并测量系统占剪力墙可变形性的系统的能量耗散。剪切墙样本位于中升墙类中,其中存在弯曲和剪切变形。用玻璃FRP条完全加固样品,以抵抗弯曲,剪切和滑动剪切变形。

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