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Propagation Behavior of Main Crack in Reinforced Concrete Beams Strengthened with CFRP under Cyclic Bending Load

机译:CFRP在循环弯曲载荷下加强钢筋混凝土梁主裂缝的传播行为

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Fatigue behavior of reinforced concrete (RC) beam can be improved by externally bonded fiber reinforced polymer (FRP). However, propagation behavior of a crack on the RC beam will have serious effect on the fatigue life of the beam strengthened with FRP. In this paper, a finite element (FE) procedure was developed to analyze the stress intensity factor (SIF) of the main crack and an experimental study was conducted to investigate the propagation rate of the main crack of the RC beam strengthened with carbon fiber laminate (CFL) under cyclic bending load. The FE analysis results show that the SIF near the main crack tip increases at the beginning and then decreases with the fatigue crack propagation. When relative crack length a is equal to 0.3, the SIF is maximum. When a approaches 0.75, the SIF approaches zero. A total of 3 RC beams strengthened with CFL were tested. The experimental results show that it is possible to divide the process of the crack propagation into three distinct phases, including crack initiation and then quickly propagation, stable propagation and then rest and unstable propagation. A semi-empirical equation based on the Paris Law was developed to predict the crack propagation rate.
机译:钢筋混凝土(RC)梁的疲劳行为可以通过外贴纤维能够提高增强的聚合物(FRP)。然而,在混凝土梁的裂纹的传播行为将对与FRP加强梁的疲劳寿命严重影响。在本文中,一个有限元(FE)程序的开发是为了分析的应力强度因子的主要裂纹(SIF)和实验研究以调查与碳纤维叠层体加强钢筋混凝土梁的主裂纹的传播速度(CFL)周期性弯曲载荷下。有限元分析结果表明,在接近开始时的主裂纹尖端增加SIF,然后与疲劳裂纹扩展减小。当相对于裂缝长度a等于0.3,则SIF是最大的。当接近0.75时,SIF趋近于零。共有3 RC梁加强与CFL进行了测试。实验结果表明,这是可能的裂纹扩展的过程划分为三个不同的阶段,包括裂纹萌生和然后快速传播,传播稳定然后休息和不稳定的传播。基于巴黎法的半经验公式的开发是为了预测裂纹扩展速率。

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