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Seismic performance of concrete columns reinforced with hybrid shape memory alloy (SMA) and fiber reinforced polymer (FRP) bars

机译:混合形状记忆合金(SMA)和纤维增强聚合物(FRP)筋增强的混凝土柱的抗震性能

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摘要

Lack of corrosion resistance of structural steel has resulted in many structural failures. Fiber reinforced polymer (FRP) bar is emerging as a viable solution to replace steel to mitigate corrosion problems. Since FRP is a brittle material, it can bring about catastrophic sudden structural failures. Conversely, postearthquake recovery of structures is another prime objective for performance based seismic design. Shape memory alloy (SMA) has the unique ability to undergo large inelastic deformation and regain its undeformed shape through stress removal. Here a hybrid reinforced concrete (RC) column configuration is presented in order to reduce permanent damages, and enhance its corrosion resistance capacity where the plastic hinge region will be reinforced with SMA or stainless steel and the remaining regions with FRP or stainless steel rebar. An analytical investigation has been carried out to develop such hybrid RC columns and analyze them under seismic loadings. The results are compared in terms of base shear-tip displacement, base shear demand/capacity ratio, ductility, residual displacement, and energy dissipation capacity to those of a similar RC column reinforced with stainless steel. The results indicate that such corrosion resistant hybridized column can substantially reduce the residual displacement with adequate energy dissipation capacity during earthquakes.
机译:结构钢的耐腐蚀性不足导致许多结构故障。纤维增强聚合物(FRP)钢筋作为替代钢以减轻腐蚀问题的可行解决方案正在出现。由于玻璃钢是一种脆性材料,因此可能会导致灾难性的突然结构故障。相反,结构的地震后恢复是基于性能的抗震设计的另一个主要目标。形状记忆合金(SMA)具有独特的能力,能够承受较大的非弹性变形并通过去除应力恢复其未变形的形状。此处介绍了一种混合钢筋混凝土(RC)柱配置,以减少永久性损坏并增强其耐腐蚀能力,其中将使用SMA或不锈钢加固塑料铰链区域,而使用FRP或不锈钢钢筋加固其余区域。已经进行了分析研究以开发这种混合RC柱并在地震荷载下对其进行分析。将结果与与不锈钢加固的类似RC柱的基础剪力端位移,基础剪力需求/承载比,延展性,残余位移和能量耗散能力进行了比较。结果表明,这种抗腐蚀混合柱能够在地震过程中以足够的能量耗散能力大大减少残余位移。

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