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Seismic response of RC structures rehabilitated with SMA under near-field earthquakes

机译:SMA加固的RC结构在近场地震中的地震反应

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摘要

During recent earthquakes, a significant number of concrete structures suffered extensive damage. Conventional reinforced concrete structures are designed for life-time safety that may see permanent inelastic deformation after severe earthquakes. Hence, there is a need to utilize adequate materials that have the ability to tolerate large deformation and get back to their original shape. Super-elastic shape memory alloy (SMA) is a smart material with unique properties, such as the ability to regain undeformed shape by unloading or heating. In this research, four different stories (three, five, seven and nine) of reinforced concrete (RC) buildings have been studied and subjected to near-field ground motions. For each building, two different types of reinforcement detailing are considered, including (1) conventional steel reinforcement (RC frame) and (2) steel-SMA reinforcement (SMA RC frame), with SMA bars being used at plastic zones of beams and steel bars in other regions. Nonlinear time history analyses have been performed by "SeismoStruct" finite element software. The results indicate that the application of SMA materials in plastic hinge regions of the beams lead to reduction of the residual displacement and consequently post-earthquake repairs. In general, it can be said that shape memory alloy materials reduce structural damage and retrofit costs.
机译:在最近的地震中,大量混凝土结构遭受了广泛的破坏。传统的钢筋混凝土结构是为终身安全而设计的,在剧烈地震后可能会出现永久性的非弹性变形。因此,需要使用能够承受较大变形并恢复其原始形状的适当材料。超弹性形状记忆合金(SMA)是一种智能材料,具有独特的性能,例如能够通过卸载或加热恢复未变形的形状。在这项研究中,对钢筋混凝土(RC)建筑物的四个不同层(三个,五个,七个和九个)进行了研究,并进行了近场地面运动。对于每栋建筑物,都考虑了两种不同类型的钢筋细节,包括(1)传统的钢筋(RC框架)和(2)SMA钢(SMA RC框架),其中SMA钢筋用于梁和钢的塑料区域其他地区的酒吧。非线性时程分析已通过“ SeismoStruct”有限元软件执行。结果表明,SMA材料在梁的塑料铰链区域中的应用导致残余位移的减小,并因此导致了地震后的修复。通常,可以说形状记忆合金材料减少了结构损伤和改造成本。

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