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Shear strengthening of deficient concrete beams with marine grade aluminium alloy plates

机译:剪切强化亚级铝合金板的缺陷混凝土梁

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摘要

In this study, high strength aluminum alloys (AA) plates are proposed as a new construction material for strengthening reinforced concrete (RC) beams. The purpose of this investigation is to evaluate AA plate's suitability as externally bonded reinforcing (EBR) materials for retrofitting shear deficient beams. A total of twenty RC beams designed to fail in shear were strengthened with different spacing and orientations. The specimens were loaded with four-points loading till failure. The considered outcome parameters included load carrying capacity, deflection, strain in plates, and failure modes. The results of all tested beams showed an increase up to 37% in the load carrying capacity and also an increase in deflection compared to the control un-strengthened beams. This demonstrated the potential of adopting AA plates as EBR material. Finally, the shear contribution from the AA plates was predicted using the models available in the ACI440-08, TR55 and FIB14 design code for fiber reinforced polymer (FRP) plates. The predicted results were compared to experimental testing data with the ratio of the experimentally measured ultimate load to predicted load, range on the average, between 93% and 97%.
机译:在该研究中,提出了高强度铝合金(AA)板作为用于加强钢筋混凝土(RC)梁的新型建筑材料。本研究的目的是评估AA板的适用性,作为外部粘合的增强(EBR)材料,用于改造剪切缺陷梁。使用不同的间隔和方向,总共有20个设计用于剪切失效的RC光束。标本载有四分载荷,直至发生故障。所考虑的结果参数包括载荷承载能力,偏转,压力在板中,以及失效模式。与控制未加强的光束相比,所有测试梁的结果显示在负载承载力中增加高达37%,并且还增加了偏转的增加。这证明了采用AA板作为EBR材料的潜力。最后,使用ACI440-08,TR55和FIB14设计代码中可用的模型来预测来自AA板的剪切贡献,用于纤维增强聚合物(FRP)板。将预测结果与实验测量的最终负荷与预测负载的比率进行比较,平均范围在93%和97%之间。

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