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Experimental investigation on optimal shear strengthening of RC beams using NSM GFRP bars

机译:NSM GFRP筋加固RC梁的最佳抗剪试验研究。

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摘要

Several techniques have been developed for shear strengthening of reinforced concrete (RC) members by using fiber reinforced polymer (FRP) composites. However, debonding of FRP retrofits from concrete substrate still deemed as a challenging concern in their application which needs to be scrutinized in details. As a result, this paper reports on the results of an experimental investigation on shear strengthening of RC beams using near surface mounted (NSM) FRP reinforcing bars. The main objective of the experimentation was increasing the efficiency of shear retrofits by precluding/postponing the premature debonding failure. The experimental program was comprised of six shear deficient RC beams. The test parameters include the FRP rebar spacing, inclination angle, and groove shape. Also, an innovative modification was introduced to the conventional NSM technique and its efficiency was evaluated by experimental observation and measurement. The results testified the efficiency of glass FRP (GFRP) rebars in increasing the shear strength of the test specimens retrofitted using conventional NSM technique. However, debonding of FRP bars impeded exploiting all retrofitting advantages and induced a premature shear failure. On the contrary, application of the proposed modified NSM (MNSM) technique was not only capable of preventing the premature debonding of FRP bars, but also could replace the failure mode of specimen from the brittle shear to a ductile flexural failure which is more desirable.
机译:已经开发了几种通过使用纤维增强聚合物(FRP)复合材料来剪切增强钢筋混凝土(RC)构件的技术。然而,从混凝土基体上剥离FRP改型仍被认为是其应用中的挑战性问题,需要详细研究。结果,本文报道了使用近表面安装(NSM)FRP钢筋对RC梁进行剪力加固的实验研究结果。实验的主要目的是通过防止/推迟过早的脱胶破坏来提高剪切机改造的效率。实验程序由六个剪切不足的RC梁组成。测试参数包括FRP钢筋间距,倾斜角度和凹槽形状。另外,对常规NSM技术进行了创新性修改,并通过实验观察和测量来评估其效率。结果证明了玻璃纤维增​​强塑料(GFRP)钢筋在提高使用常规NSM技术改造的试样的剪切强度方面的效率。但是,FRP筋的脱胶阻碍了所有改造优势的发挥,并导致了过早的剪切破坏。相反,所提出的改进的NSM(MNSM)技术的应用不仅能够防止FRP筋过早脱粘,而且能够将试样的破坏模式从脆性剪切转变为韧性弯曲破坏,这是更理想的选择。

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