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Numerical Cracking and Debonding Analysis of RC Beams Reinforced with FRP Sheet

机译:FRP片材加固RC梁的数值开裂与脱粘分析

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摘要

Bonding a fiber reinforced polymer (FRP) sheet to the tension-side surface of reinforced concrete (RC) structures is often performed to upgrade the flexural capacity and stiffness. Except for upper concrete crushing, FRP sheet reinforcing RC structure may fail in sheet rupture, sheet peeloff failure due to opening of a critical diagonal crack, or concrete cover delamination failure from the sheet end. Accompanying the occurrence of these failure modes, reinforcing effects of the FRP sheet will be lost and load-carrying capacity of the RC structures will be decreased suddenly. This study is devoted to developing a numerical analysis method by using a three-dimensional elasto-plastic finite element method to simulate the load-carrying capacity of RC beams failed in the FRP sheet peeloff mode. Here, the discrete crack approach was employed to consider geometrical discontinuities such as opening of cracks, slipping of rebar, and debonding of the FRP sheet. Comparisons between analytical and experimental results confirm that the proposed numerical analysis method is appropriate for estimating the load-carrying capacity and failure behavior of RC beams flexurally reinforced with a FRP sheet.
机译:通常执行将纤维增强聚合物(FRP)板粘结到钢筋混凝土(RC)结构的受拉侧表面的方法,以提高抗弯能力和刚度。除上部混凝土碾碎外,FRP片材增强RC结构可能会因以下原因而失效:片材破裂,由于关键对角裂纹的开裂而导致片材剥离失败,或从片材末端开始的混凝土覆盖层分层失败。伴随着这些破坏模式的出现,FRP片材的增强效果将消失,RC结构的承载能力将突然下降。这项研究致力于通过使用三维弹塑性有限元方法来模拟在FRP板剥离模式下失效的RC梁的承载能力,从而开发一种数值分析方法。在这里,采用离散裂纹方法来考虑几何上的不连续性,例如裂纹的打开,钢筋的打滑以及FRP板的剥离。分析结果与实验结果的比较证实,所提出的数值分析方法适用于估算FRP板抗弯加固的RC梁的承载能力和破坏性能。

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