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Ultimate behavior of CFRP strengthened RC flat slabs under a centrally applied load

机译:集中施加荷载下CFRP加固的RC平板的最终性能

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This paper presents an analytical and experimental investigation for evaluating the punching shear strength of two-way concrete slabs externally bonded by CFRP composite sheets. First, the punching failure mechanism and the parameters governing this failure mode are discussed and an analytical model for punching failure of reinforced concrete slabs developed by Menetrey [Synthesis of punching failure in reinforced concrete. Cement Concrete Compos 2002;24:497-507] is presented. Based on numerical simulation, this model allows the treatment of slabs considering the dowel effect contribution of steel reinforcement. The generalization of this model to the case of slabs externally bonded by CFRP laminates requires the consideration of biaxial behavior of composite sheets resulting from two-way slab boundary conditions. Finally, the theoretical extension is applied to predict the ultimate punching shear strength of eight slabs with several levels of CFRP reinforcement and designed to fail in shear. The results show good agreement between the predicted and experimental values.
机译:本文提供了一种分析和实验研究,以评估由CFRP复合板外部粘结的双向混凝土板的冲切抗剪强度。首先,讨论了冲孔破坏机理和控制该破坏模式的参数,并由Menetrey开发了钢筋混凝土板冲孔破坏的分析模型[钢筋混凝土冲孔破坏的合成。介绍了《水泥混凝土杂货》 2002; 24:497-507。基于数值模拟,该模型考虑了钢筋的销效应,可以对板进行处理。要将该模型推广到CFRP层压板外部粘结的板,需要考虑双向板边界条件导致的复合板的双轴行为。最后,将理论扩展应用于预测具有数个CFRP加固水平的八块板的极限冲切抗剪强度,并设计成不会发生剪切破坏。结果表明预测值和实验值之间有很好的一致性。

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