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FEM Study of Different Methods of Fiber Reinforcement Polymer Strengthening of a High Strength Concrete Beam-Column Connection

机译:高强混凝土梁柱连接处不同纤维增强聚合物加固方法的有限元研究

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In reinforced concrete (RC) structures, beam-column connection region has a considerable effect on the behavior of structures. Using fiber reinforcement polymer (FRP) for the strengthening of connections in RC structures can be one of the solutions to retrofitting this zone which result in the enhanced behavior of structure. In this paper, these changes in behavior by using FRP for high strength concrete beam-column connection have been studied by finite element modeling. The concrete damage plasticity (CDP) model has been used to analyze the RC. The results illustrated a considerable development in load-bearing capacity but also a noticeable reduction in ductility. The study also assesses these qualities for several modes of strengthening and suggests the most effective mode of strengthening. Using FRP in flexural zone and FRP with 45-degree oriented fibers in shear zone of joint showed the most significant change in behavior.
机译:在钢筋混凝土(RC)结构中,梁柱连接区域对结构的性能有很大影响。使用纤维增强聚合物(FRP)来增强RC结构中的连接可以是对该区域进行翻新的解决方案之一,从而可以增强结构的性能。本文通过有限元建模研究了在高强度混凝土梁柱连接中使用FRP的行为变化。混凝土破坏塑性(CDP)模型已用于分析钢筋混凝土。结果表明,承重能力有了很大的发展,但延展性明显下降。该研究还评估了几种强化方式的这些品质,并提出了最有效的强化方式。在弯曲区使用FRP,在接头剪切区使用45度取向纤维的FRP表现出最显着的变化。

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