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Active Confinement of Reinforced Concrete Bridge Columns Using Shape Memory Alloys

机译:形状记忆合金主动约束钢筋混凝土桥柱

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This paper presents experimental and analytical work conducted to explore the feasibility of using an innovative technique for seismic retrofitting of RC bridge columns using shape memory alloys (SMAs) spirals. The high recovery stress associated with the shape recovery of SMAs is being sought in this study as an easy and reliable method to apply external active confining pressure on RC bridge columns to improve their ductility. Uniaxial compression tests of concrete cylinders confined with SMA spirals show a significant improvement in the concrete strength and ductility even under small confining pressure. The experimental results are used to calibrate the concrete constitutive model used in the analytical study. Analytical models of bridge columns retrofitted with SMA spirals and carbon fiber-reinforced polymer (CFRP) sheets are studied under displacement-controlled cyclic loading and a suite of strong earthquake records. The analytical results proves the superiority of the proposed technique using SMA spirals to CFRP sheets in terms of enhancing the strength and effective stiffness and reducing the concrete damage and residual drifts of retrofitted columns.
机译:本文介绍了进行的实验和分析工作,以探索使用创新技术对使用形状记忆合金(SMAs)螺旋的RC桥柱进行抗震改造的可行性。在这项研究中,寻求与SMA形状恢复相关的高恢复应力,作为在RC桥柱上施加外部主动围压以提高其延展性的简便可靠的方法。 SMA螺旋约束的混凝土圆柱体的单轴压缩试验表明,即使在较小的约束压力下,混凝土的强度和延展性也得到了显着改善。实验结果用于校准分析研究中使用的混凝土本构模型。研究了在位移控制的循环荷载和一组强烈地震记录下,对SMA螺旋和碳纤维增强聚合物(CFRP)板进行改造的桥梁柱的分析模型。分析结果证明了使用SMA螺旋比CFRP薄板所提出的技术在增强强度和有效刚度以及减少混凝土损坏和加装柱的残余漂移方面的优越性。

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