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Modeling of CFRP-Concrete Interface Subjected to Coupled Pull-out and Push-off Actions

机译:CFRP混凝土界面的建模耦合拉出和推断动作

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This paper presents a finite element (FE) modeling method for predicting the 1C debonding failure when the FRP/concrete interface is subjected to coupled pull-out (shear) and push-off (dowel) actions. Damaged plasticity model was used to simulate the behavior of concrete close to FRP/concrete interface. A thin damage band exposed to mixed-mode loading condition was modeled separately along the FRP-concrete interface Cohesive elements were used to model the FRP/concrete interface. A sensitivity analysis was performed to find the appropriate damaged band dimensions, bending stiffness of FRP, and tensile strength of concrete for the model. The numerical results were validated by the experimental data. It was found in this research that the thickness of damage band was not a key parameter when Mode I loading dominated the debonding failure FRP flexural stiffness had significant effect on behaviors of the strengthened beams, and the concrete tensile strength itself cannot be used as the unique failure criterion for predicting debonding failure.
机译:本文提出了一种有限元(FE)建模方法,用于预测FRP /混凝土界面耦合拉出(剪切)和推截止(DOWEL)动作时的1C剥离故障。损坏的可塑性模型用于模拟混凝土的行为靠近FRP /混凝土界面。暴露于混合模式负载条件的薄损伤带沿着FRP - 混凝土界面的粘性元件分开建模,用于模拟FRP /混凝土界面。进行敏感性分析以找到适当的损坏带尺寸,弯曲刚度的FRP,以及模型混凝土的拉伸强度。实验数据验证了数值结果。在这项研究中发现,当模式I装载主导时,损坏频段的厚度不是关键参数,剥离失效FRP弯曲僵硬对加强光束的行为产生显着影响,并且混凝土拉伸强度本身不能用作独特的预测禁止失败的失败标准。

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