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Flexural behavior of reinforced concrete beams externally strengthened with CFRP sheets bonded with an inorganic matrix

机译:无机基质粘结CFRP片体外加固钢筋混凝土梁的抗弯性能

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摘要

Externally bonding fiber reinforced polymer (FRP) sheets with an epoxy resin is an effective technique for strengthening and repairing reinforced concrete (RC) beams under flexural loads. In this study, a total of eight RC beams was tested and analyzed: one control beam and seven beams reinforced with three to six layers of carbon fiber sheets bonded by an inorganic epoxy. All specimens were subjected to a four-point bending test under load control while load, deflection, mid-span strain and failure mode were recorded up to failure. It is found that the load carrying capacity increases with the number of layers of carbon fiber sheet up to 170.2% of the control beam strength. For three and four layers of FRP reinforcement, the beams failed by rupture of FRP, while beams with five and six layers of FRP reinforcement failed by FRP delamination. The ductility of the FRP strengthened beams is greatly reduced compared to the control beam. A moment deflection model is developed and used on the tested beams in current and other similar studies. Good agreement between experiment and prediction values is achieved.
机译:用环氧树脂从外部粘合纤维增强聚合物(FRP)片是在弯曲载荷下增强和修复钢筋混凝土(RC)梁的有效技术。在这项研究中,总共测试和分析了八根RC梁:一根控制梁和七根由无机环氧树脂粘结的三到六层碳纤维板增强的梁。所有样本均在负荷控制下进行了四点弯曲测试,同时记录了直至破坏的负荷,挠度,中跨应变和破坏模式。可以发现,随着碳纤维片层数的增加,承载能力增加,达到控制梁强度的170.2%。对于三层和四层FRP加固,梁由于FRP断裂而失效,而具有五层和六层FRP加固的梁由于FRP分层而失效。与控制梁相比,FRP加固梁的延展性大大降低。在当前和其他类似研究中,开发了弯矩挠度模型并将其用于测试梁。实验值和预测值之间达成了良好的一致性。

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