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Flexural strengthening of reinforced lightweight polystyrene aggregate concrete beams with near-surface mounted GFRP bars

机译:GFRP筋近表面安装加固轻质聚苯乙烯骨料混凝土梁的抗弯加固

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Application of near-surface mounted (NSM) fibre reinforced polymer (FRP) bars is emerging as a promising technology for increasing flexural and shear strength of deficient reinforced concrete (RC) members. In order for this technique to perform effectively, the structural behaviour of RC elements strengthened with NSM FRP bars needs to be fully characterized. This paper focuses on the characterization of flexural behaviour of RC members strengthened with NSM glass-FRP bars. Totally, 10 beams were tested using symmetrical two-point loads test. The parameters examined under the beam tests were type of concretes (lightweight polystyrene aggregate concrete and normal concrete), type of reinforcing bars (GFRP and steel), and type of adhesives. Flexural performance of the tested beams including modes of failure, moment-deflection response and ultimate moment capacity are presented and discussed in this paper. Results of this investigation showed that beams with NSM GFRP bars showed a reduction in ultimate deflection and an improvement in flexural stiffness and bending capacity, depending on the PA content of the beams. In general, beams strengthened with NSM GFRP bars overall showed a significant increase in ultimate moment ranging from 23% to 53% over the corresponding beams without NSM GFRP bars. The influence of epoxy type was found conspicuously dominated the moment-deflection response up to the peak moment. Besides, the ultimate moment of concrete beams reinforced with GFRP bars could be predicted satisfactorily using the equation provided in ACI 318-95 Building Code.
机译:近表面安装(NSM)纤维增强聚合物(FRP)钢筋的应用正在成为增加有缺陷的钢筋混凝土(RC)构件的抗弯和抗剪强度的一项有前途的技术。为了使该技术有效执行,需要充分表征使用NSM FRP筋加固的RC元件的结构性能。本文重点介绍了用NSM玻璃纤维增​​强的钢筋加固的RC构件的弯曲行为。总共使用对称的两点载荷测试对10个梁进行了测试。梁测试下检查的参数是混凝土的类型(轻质聚苯乙烯骨料混凝土和普通混凝土),钢筋的类型(GFRP和钢)以及粘合剂的类型。本文介绍并讨论了被测梁的抗弯性能,包括破坏模式,弯矩挠度响应和极限弯矩能力。这项研究的结果表明,取决于梁的PA含量,带有NSM GFRP筋的梁显示出极限挠度的减小以及弯曲刚度和弯曲能力的改善。通常,与没有NSM GFRP筋的相应梁相比,使用NSM GFRP筋加固的梁总体显示出极限弯矩显着增加,从23%到53%。发现环氧树脂类型的影响明显地控制了弯矩-挠度响应直至峰值弯矩。此外,可以使用ACI 318-95建筑规范中提供的公式来令人满意地预测GFRP筋加固的混凝土梁的极限弯矩。

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