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首页> 外文期刊>Journal of Composites for Construction >Numerical Analysis of Shear Critical RC Beams Strengthened in Shear with FRP Sheets
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Numerical Analysis of Shear Critical RC Beams Strengthened in Shear with FRP Sheets

机译:FRP片材抗剪加固的临界RC梁的数值分析

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The objective of this paper is to contribute to the understanding of the shear resisting mechanisms in RC beams shear-strengthened by externally bonded fiber-reinforced polymer (FRP) sheets. For this purpose, a fiber beam model of RC frames subjected to combined normal and shear forces, previously developed by the authors, has been extended to include the response of externally bonded FRP shear reinforcement in a wrapped configuration. No FRP delamination phenomena or tensile strength reductions in the corner zones are taken into account in the model. The numerical results have been compared with eight existing experimental results and the influence of the FRP sheets on the shear strength of the beam has been studied. The effects of the contribution of FRP ratio on the concrete, on the transversal steel strains and stresses, on the longitudinal tensile steel stresses, and on the diagonal compression struts have been analyzed. It is concluded that the presence of FRP reinforcement modifies the inclinations of cracks and struts, the concrete confinement stresses, and other parameters related to the shear response, producing an interaction between the concrete, internal steel, and FRP components of the shear strength.
机译:本文的目的是有助于理解由外部粘结的纤维增强聚合物(FRP)片材抗剪的RC梁的抗剪机理。为此,作者先前开发的承受组合法向力和剪切力的RC框架的纤维梁模型已扩展为包括包裹形式的外部粘结FRP剪力增强的响应。模型中未考虑FRP分层现象或拐角区域的抗拉强度降低。将数值结果与现有的八个实验结果进行了比较,并研究了FRP板对梁抗剪强度的影响。分析了FRP比对混凝土,钢的横向钢应变和应力,钢的纵向拉伸应力以及对角压缩支柱的影响。结论是,FRP增强剂的存在改变了裂缝和支杆的倾角,混凝土的约束应力以及与剪切响应有关的其他参数,从而在混凝土,内部钢和FRP的抗剪强度之间产生了相互作用。

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