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首页> 外文期刊>Journal of Composites for Construction >Seismic Behavior of Beam-Column Joints Reinforced with GFRP Bars and Stirrups
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Seismic Behavior of Beam-Column Joints Reinforced with GFRP Bars and Stirrups

机译:GFRP筋和箍筋加固的梁柱节点的抗震性能

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Reinforced concrete beam-column joints are commonly used in structures such as parking garages and road overpasses, which might be exposed to extreme weathering conditions and the application of deicing salts. The use of the noncorrodible fiber-reinforced polymer (FRP) reinforcing bars in such structures is beneficial to overcome the steel-corrosion problems. However, FRP materials exhibit linear-elastic stress-strain characteristics up to failure, which raises concerns on their performance in beam-column joints in which energy dissipation, through plastic behavior, is required. The objective of this research project is to assess the seismic behavior of concrete beam-column joints reinforced with glass (G) FRP bars and stirrups. Five full-scale exterior T-shaped beam-column joint prototypes were constructed and tested under simulated seismic load conditions. The longitudinal and transversal reinforcement types and ratios are the main investigated parameters in this study. The experimental results showed that the GFRP-reinforced joints can successfully sustain a 4.0% drift ratio without any significant residual deformation. This indicates the feasibility of using GFRP bars and stirrups as reinforcement in the beam-column joints subjected to seismic-type loading. It was also concluded that, increasing the beam reinforcement ratio, while satisfying the strong column-weak beam concept, can enhance the ability of the joint to dissipate seismic energy.
机译:钢筋混凝土梁柱节点通常用于诸如停车场和道路立交桥之类的结构中,这些结构可能会暴露于极端的风化条件和除冰盐的应用中。在此类结构中使用不可腐蚀的纤维增强聚合物(FRP)增强棒有利于克服钢腐蚀问题。但是,FRP材料表现出直至断裂的线性弹性应力应变特性,这引起了人们对其在需要通过塑性行为进行耗能的梁柱节点中性能的关注。该研究项目的目的是评估玻璃纤维增​​强玻璃纤维筋和箍筋加固的混凝土梁柱节点的抗震性能。在模拟地震载荷条件下,构建并测试了五个完整的外部T形梁柱联合原型。纵向和横向钢筋的类型和比例是本研究中主要研究的参数。实验结果表明,GFRP加固的接头可以成功地保持4.0%的漂移率,而没有任何明显的残余变形。这表明在遭受地震型荷载的梁柱节点中,使用GFRP筋和箍筋作为钢筋的可行性。得出的结论是,在满足强柱弱梁概念的同时,提高梁的配筋率可以增强节点消散地震能量的能力。

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