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Behavior of RC beams flexurally strengthened with NSM CFRP laminates

机译:NSM CFRP层压板抗弯加固RC梁的性能

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An experimental program was carried out to investigate the behavior of RC beams flexurally strengthened using the NSM technique with CFRP laminates. Four beams were tested, a reference beam without CFRP, and three beams flexurally strengthened using different percentage of laminates. The experimental results show that NSM CFRP laminates is an effective solution to increase cracking, yielding and maximum loads of beams failing in bending. Furthermore, the high tensile strength of the CFRP was effectively mobilized. By increasing the CFRP percentage, the load carrying capacity of the NSM beams increased, while the ductility level decreased. Taking into account the experimental results, the predictive performance of the analytical formulation proposed by the ACI was assessed considering two methodologies to determine the maximum strain that can be applied to the CFRP: i) the ACI proposal; ii) the equation proposed by Barros et al. (2007). ACI formulation provides safe results by using both methodologies, but the Barros et al. equation ensures better predictions. A numerical strategy was used to evaluate the load–deflection relationship of the tested beams and to highlight the influence of the longitudinal bars percentage, the CFRP percentage and the concrete strength on the NSM flexural strengthening effectiveness of RC beams.
机译:进行了一个实验程序来研究使用NSM技术与CFRP层压板抗弯加固的RC梁的性能。测试了四根梁,无CFRP的参考梁,以及使用不同百分比的层压板抗弯加固的三根梁。实验结果表明,NSM CFRP层压板是增加弯曲失败的梁的裂缝,屈服和最大载荷的有效解决方案。此外,有效地调动了CFRP的高拉伸强度。通过增加CFRP百分比,NSM梁的承载能力增加,而延性水平降低。考虑到实验结果,通过两种方法来确定ACI提出的分析制剂的预测性能,以确定可以应用于CFRP的最大应变:i)ACI提议; ii)Barros等人提出的方程。 (2007)。通过使用两种方法,ACI配方均可以提供安全的结果,但是Barros等人。等式确保更好的预测。数值策略用于评估被测梁的荷载-挠度关系,并强调纵向钢筋百分比,CFRP百分比和混凝土强度对RC梁的NSM抗弯加固效果的影响。

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