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Flexural strengthening of RC beams using aluminum alloy plates with mechanically-fastened anchorage systems: An experimental investigation

机译:采用机械固定锚固系统的铝合金板的RC梁的弯曲强化:实验研究

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Externally bonded reinforcement (EBR) has emerged as one of the promising techniques for flexural strengthening of reinforced concrete (RC) members due to its practicality and structural effectiveness. However, shortcomings like premature failure modes, cost, labor, and installation time limited its use. Mechanically fastened (MF) Aluminum Alloy (AA) plates instead have the potential to overcome some of these drawbacks by providing strength and ductility, while influencing the failure modes. In this investigation, 16 RC beams were prepared, one beam was left un-strengthened (CB), one was strengthened with an externally bonded (EB) AA plate (CBE), and the remaining 14 beams were strengthened with MF AA plates that varied based on expansion anchor bolts (EAB) sizes, spacing, layout, and the presence or absence of epoxy. The test results indicated that all the specimens with MF AA plates exhibited approximately 30% increase in strength accompanied with drastic increase in ductility up to about 84% compared to specimen CBE. Analytical predictions were made to numerically assess the advantages of using MF systems where ACI 318-19 outperformed ACI 440.2R-17 due to the sufficient composite behavior that allows the AA plates to behave similar to steel reinforcement such that the section has an additional lever arm. It is concluded that the implementation of epoxy and EAB as an alternative anchorage technique serves as a viable approach in enhancing the strength and ductility of RC beams strengthened with AA plates.
机译:外部粘合增强(EBR)已成为抗弯强化由于其实用性和结构效果而强化钢筋混凝土(RC)成员的有希望的技术之一。但是,更早的失效模式,成本,劳动力和安装时间的缺点限制了其使用。机械紧固(MF)铝合金(AA)板代替通过提供强度和延展性,同时影响失效模式,有可能克服这些缺点中的一些。在该研究中,制备了16个RC梁,将一个光束未加强(Cb),用外部键合(EB)AA板(CBE)加强,并且剩余的14梁用变化的MF AA板加强基于膨胀锚螺栓(EAB)尺寸,间隔,布局以及环氧树脂的存在或不存在。测试结果表明,与标本CBE相比,伴随着MF AA板的所有标本表现出大约30%的强度增加,延展性急剧增加至约84%。进行了分析预测,以数值评估使用MF系统的优点,其中由于足够的复合行为,ACI 318-19优于ACI 440.2R-17,这允许AA板行为类似于钢筋,使得该部分具有额外的杠杆臂。结论是,作为替代锚固技术的环氧和EAB的实施用作增强RC光束的强度和延展性的可行方法。

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