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Nonlinear simulation of reinforced concrete beams retrofitted by near- surface mounted iron-based shape memory alloys

机译:近表面安装的铁基形状记忆合金加筋的钢筋混凝土梁的非线性模拟

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摘要

Retrofitting of reinforced concrete members by near-surface-mounted (NSM) reinforcement is increasingly being investigated as an alternative strengthening method. Applying prestressing with the NSM technique enhances the load carrying capacity during service and results in better utilization of the strengthening material potentialities. Iron-based shape memory alloys (Fe-SMAs) are a cost-effective type of shape memory alloys and can be easily prestressed and used as NSM reinforcements. In this study, strengthening of RC beams in flexure with NSM Fe-SMA reinforcements is explored by developing a 3D nonlinear finite element model in ABAQUS. Comparison between the finite element (FE) model results and experiments in the literature confirms the accuracy of the proposed models. The validated FE model is then used to identify the effects of various design parameters on the performance of RC members strengthened with Fe-SMA reinforcements. Finally, an RC beam strengthened with NSM CFRP strip is modeled and compared to the NSM Fe-SMA strengthened RC beam. It is shown that ductility and energy absorption of the CFRP strengthened beam is significantly less than the Fe-SMA strengthened beam.
机译:作为替代的加固方法,越来越多地研究了通过近表面安装(NSM)加固来加固钢筋混凝土构件。使用NSM技术施加预应力可增强服务期间的承载能力,并能更好地利用增强材料的潜力。铁基形状记忆合金(Fe-SMAs)是一种经济有效的形状记忆合金,可以很容易地预应力并用作NSM增强材料。在这项研究中,通过在ABAQUS中开发3D非线性有限元模型,探索了使用NSM Fe-SMA增强件来加固RC梁的挠曲性。有限元(FE)模型结果与文献中的实验之间的比较证实了所提出模型的准确性。经过验证的有限元模型然后用于识别各种设计参数对用Fe-SMA增强材料增强的RC构件性能的影响。最后,对用NSM CFRP条加固的RC梁进行建模,并将其与NSM Fe-SMA加固的RC梁进行比较。结果表明,CFRP加固梁的延展性和能量吸收明显小于Fe-SMA加固梁。

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