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Experimental Study on Interfacial Behavior of CFRP-Bonded Concrete

机译:CFRP粘结混凝土界面行为的试验研究

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摘要

External bonding of Carbon Fiber Reinforced Plastic (CFRP) sheets has come to be regarded as a very effective method for the strengthening of reinforced concrete structures. The behavior of CFRP-strengthened RC structures is mainly governed by the interfacial behavior, which represents the stress transfer and relative slip between concrete and the CFRP sheet. In this paper, the effects of bonded length, width, and concrete strength on the interfacial behavior are experimentally verified and a bond-slip model is proposed based on the experimental results. From the pull test for CFRP-bonded concrete, it is found that the bond strength increases as the bond width increases and the effect of concrete strength is minor. The proposed bond-slip model has nonlinear ascending regions and exponential descending regions, facilitated by modifying the conventional bilinear bond-slip model. Finite element analysis results of interface element implemented with bond-slip model have shown good agreement with the experimental results performed in this study. It is found that the failure load and strain distribution predicted by finite element analysis with the proposed bond-slip are in good agreement with results of experiments.
机译:碳纤维增强塑料(CFRP)板的外部粘合已被视为增强钢筋混凝土结构的一种非常有效的方法。 CFRP加固的RC结构的行为主要受界面行为支配,这代表了混凝土与CFRP板之间的应力传递和相对滑动。通过实验验证了粘结长度,宽度和混凝土强度对界面行为的影响,并基于实验结果提出了粘结滑移模型。从CFRP粘结混凝土的拉力试验中发现,粘结强度随粘结宽度的增加而增加,混凝土强度的影响较小。所提出的结合滑动模型具有非线性的上升区域和指数下降的区域,这可以通过修改常规的双线性结合滑动模型来实现。用结合滑移模型实现的界面元素的有限元分析结果与本研究中的实验结果吻合良好。结果表明,利用有限元分析和结合滑动预测的破坏载荷和应变分布与实验结果吻合良好。

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