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首页> 外文期刊>Advances in civil engineering >Seismic Behavior of Three-Story Prestressed Fabricated Concrete Frame under Dynamic and Low Reversed Cyclic Loading
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Seismic Behavior of Three-Story Prestressed Fabricated Concrete Frame under Dynamic and Low Reversed Cyclic Loading

机译:动态低反向反复荷载下三层预应力预制混凝土框架的抗震性能

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Precast concrete structure is the building industrialization of the sure route. It can realize the construction process of low energy consumption and low emission and effectively meet the green development requirements of the construction industry. Based on prestressing technique, the connections of the precast concrete structure obtain prestress producing integrate joints and continuous frames, which improve the seismic safety and are applied widely in the earthquake area. To study seismic behavior of prestressed fabricated concrete frame structure, the experiments on the concrete frame under dynamic loading and low reversed cyclic loading were carried out. The single-span three-story prestressed fabricated concrete frame can accurately represent the load-carrying capability and the failure mechanism of multistory frame. Results of the study show that experimental specimens have good behaviors such as full hysteresis curves, proper displacement restoring capacity, and energy dissipation; the maximum interlayer drift ratio arrives 0.27% which has no damage to the frame in small earthquakes subjected to the 102 gal peak ground acceleration; the frame is repairable in moderate earthquakes when the maximal interlayer drift ratio arrives 0.73% subjected to the 204 gal peak ground acceleration; plastic hinges appeared at the ends of beam under low reversed cyclic loading firstly where the section curvature ductility factor ranges from 3.64 to 5.62; biaxial compression is acquired at beam-column joints with the help of column axial force and horizontal prestressing force; the beam fails before the column in the prestressed fabricated concrete frame at interlayer drift ratio between 1.56% and 2.56%.
机译:预制混凝土结构是建筑产业化的必由之路。它可以实现低能耗,低排放的施工过程,并有效满足建筑行业的绿色发展要求。在预应力技术的基础上,预制混凝土结构的连接获得了产生预应力的整体节点和连续框架,提高了地震安全性,在地震地区得到了广泛的应用。为了研究预应力预制混凝土框架结构的抗震性能,进行了混凝土框架在动态荷载和低反向循环荷载作用下的试验。单跨三层预应力混凝土框架可以准确地反映多层框架的承载能力和破坏机理。研究结果表明,实验样品具有良好的性能,如完整的磁滞曲线,适当的位移恢复能力和能量耗散。最大层间漂移比达到0.27%,在地面加速度为102 gal的小地震中,对框架没有破坏;当在204 gal峰值地面加速度的作用下,最大层间漂移比达到0.73%时,该框架可在中等地震中修复。在低反向循环荷载作用下,梁的端部出现塑料铰链,截面曲率延性系数在3.64至5.62之间。借助柱轴向力和水平预应力在梁柱节点处获得双轴压缩。梁在预应力混凝土框架中的柱子之前以1.56%到2.56%的层间位移比率失效。

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