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SHEAR BEHAVIOR OF RC STRUCTURAL MEMBERS STRENGTHENED WITH FRP MATERIALS: A THREE DIMENSIONAL NUMERICAL APPROACH

机译:FRP加固钢筋混凝土结构构件的剪力特性:一种三维数值方法

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Structural behavior of Reinforced Concrete (RC) beams strengthened in shear by means of Fiber Reinforced Polymer (FRP) sheets is a very complex subject actually under discussion. A number of experimental programs have shown the importance of the FRP debonding/peeling failure and the mutual interaction between the existing steel web reinforcement and the external FRP sheets/laminates for the evaluation of the whole shear capacity of the structural element. In this work a three dimensional numerical Finite Element procedure, accounting for Mazars' damage law, included in a contact algorithm, to model the mechanisms at the FRP-concrete interface, was implemented to catch the global failure mechanisms that characterize the ultimate shear capacity of RC members with transverse steel reinforcement and FRP strengthening. The study is based on the experimental tests, described in Pellegrino and Modena (2002), carried out on RC beams with transverse steel reinforcement with and without FRP shear strengthening. It has been shown that the numerical approach is able to describe the experimental behavior of the structural member taking into account the interaction between concrete, steel and FRP contributions to shear capacity and, in particular, how the presence of external FRP sheets can modify steel contribution to the ultimate shear strength of the beams when FRP debonding/peeling failure occurs.
机译:借助于纤维增强聚合物(FRP)板在剪切作用下增强的钢筋混凝土(RC)梁的结构性能是一个非常复杂的主题,目前正在讨论中。许多实验程序表明,对于评估结构元件的整体抗剪承载力,FRP的粘结/剥离失败以及现有钢腹板钢筋与外部FRP板/层压板之间的相互作用非常重要。在这项工作中,实施了三维数值有限元程序,该程序考虑了马扎斯的损伤定律,并包括在接触算法中,以对FRP-混凝土界面上的机制进行建模,以捕获表征极限抗剪承载力的整体破坏机制。钢筋混凝土构件采用横向钢加固和玻璃钢加固。该研究基于Pellegrino和Modena(2002)中所述的实验测试,该测试是在具有和不具有FRP剪力增强的横向钢筋混凝土RC梁上进行的。结果表明,数值方法能够描述结构构件的实验行为,其中考虑到混凝土,钢和FRP对剪切能力的贡献之间的相互作用,特别是外部FRP板的存在如何改变钢的贡献发生FRP剥离/剥离失败时,梁的极限抗剪强度达到最大。

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