首页> 外文期刊>Journal of Composites for Construction >Analytical Design Model for Reinforced-Concrete Beams Strengthened in Shear Using L-Shaped CFRP Plates
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Analytical Design Model for Reinforced-Concrete Beams Strengthened in Shear Using L-Shaped CFRP Plates

机译:L形CFRP板加固受力钢筋混凝土梁的分析设计模型

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This paper presents the results of an analytical study on reinforced concrete (RC) T-beams strengthened in shear with L-shaped fiber-reinforced polymer (FRP) plates. The main objective of this study is to develop design equations for RC beams retrofitted in shear using L-shaped FRP plates, considering all possible modes of failure in ultimate limit states. Unlike RC beams strengthened with externally bonded (EB) FRP plates and fabrics, prefabricated L-shaped plates feature unconventional failure modes because of their special shape and anchorage. The possible failure modes for RC beams strengthened with L-shaped FRP plates are (1) concrete breakout at the embedded part of the FRP plate in the flange; (2) FRP pull-off at the epoxy/FRP interface; (3) FRP pull-off at the concrete/epoxy interface; and (4) FRP overlap failure at the beam soffit. These failure modes do not occur in RC beams shear-strengthened with EB FRP fabrics and plates. Therefore, the existing design models for EB FRP fabrics and plates cannot predict with sufficient accuracy the contribution of FRP to the shear resistance of RC beams shear-strengthened with L-shaped plates. In this article, new design equations are proposed in light of recent developments and data. These equations distinguish the failure mode and calculate the FRP contribution to the shear resistance of RC beams strengthened with L-shaped FRP plates. In some cases, full embedment of the L-shaped carbon FRP (CFRP) plates in the RC beam flange is not feasible because of the presence of an obstacle (e.g., longitudinal reinforcing steel bars in the flange). The new design equations are applicable to RC beams strengthened with L-shaped FRP plates with different embedment lengths (including no embedment) of the CFRP plates in the RC beam flange. The proposed design equations are validated against experimental data collected from the literature. ]
机译:本文介绍了使用L形纤维增强聚合物(FRP)板在剪切作用下加固的钢筋混凝土(RC)T型梁的分析研究结果。这项研究的主要目的是考虑到极限极限状态下所有可能的破坏模式,为使用L形FRP板剪力加固的RC梁开发设计方程。与用外部粘结(EB)FRP板和织物加固的RC梁不同,预制的L形板由于其特殊的形状和​​锚固而具有非常规的破坏模式。用L形FRP板加固的RC梁的可能破坏方式为(1)在FRP板法兰内埋部分的混凝土开裂; (2)在环氧树脂/ FRP界面处的FRP剥离; (3)在混凝土/环氧树脂界面处的玻璃钢脱模; (4)梁腹的玻璃钢重叠失效。这些破坏模式在用EB FRP织物和板材抗剪加固的RC梁中不会发生。因此,现有的EB FRP织物和板设计模型无法足够准确地预测FRP对用L型板抗剪加固的RC梁的抗剪强度的贡献。本文根据最新的发展和数据提出了新的设计方程式。这些方程式区分了破坏模式,并计算了FRP对用L形FRP板加固的RC梁的抗剪强度的贡献。在某些情况下,由于存在障碍物(例如,法兰中的纵向钢筋),将L型碳FRP(CFRP)板完全嵌入RC梁法兰中是不可行的。新的设计方程式适用于用L形FRP板加固的RC梁,其中CFRP板在RC梁翼缘中具有不同的嵌入长度(包括无嵌入)。根据从文献中收集的实验数据对提出的设计方程进行了验证。 ]

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