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Development of connections between hybrid steel truss-FRC beams and RC columns for precast earthquake-resistant framed construction

机译:混合钢桁架-FRC梁与RC柱之间的连接的开发,用于抗震框架预制

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Results from an investigation aimed at developing a moment connection for a new earthquake-resistant framing system that consists of precast hybrid fiber reinforced concrete (FRC)-encased steel truss beams and reinforced concrete (RC) columns are presented. Various connection schemes between the precast hybrid beams and RC columns were experimentally evaluated for adequate moment and shear transfer during large displacement reversals. From results of four large-scale beam-column subassembly tests, a connection scheme that features external steel rods for moment transfer and a bolted connection between the embedded steel truss and the RC column for shear transfer is proposed. The steel rods are external to the beams to facilitate installation and inspection, but can pass through or outside the precast column, depending on the beam width-to-column width ratio. Force transfer between the truss chords and the external rods is achieved through steel members forming a horizontal truss. The connection components are designed to remain elastic, forcing the inelastic activity to occur in the hybrid beam. Test specimens constructed with these connection details exhibited displacement capacities exceeding 4.0% drift, with full hysteresis loops and good strength and stiffness retention capacity. Inelastic rotations concentrated in the hybrid beams and accounted for most of the applied drift, while the connection members behaved elastically, as intended in design.
机译:提出了一项研究结果,该研究旨在开发一种新型抗震框架系统,该系统由预制的混杂纤维混凝土(FRC)包裹的钢桁架梁和钢筋混凝土(RC)柱组成。通过实验评估了预制混合梁与RC柱之间的各种连接方案,以求出大位移反向期间的适当弯矩和剪切传递。根据四个大型梁柱子组件的测试结果,提出了一种连接方案,该方案采用外部钢筋进行弯矩传递,并采用嵌入式钢桁架与RC柱之间的螺栓连接进行剪力传递。钢筋位于梁的外部,以方便安装和检查,但可以通过预制柱,也可以通过预制柱的外部,具体取决于梁宽与柱宽的比率。桁架弦和外部杆之间的力传递是通过形成水平桁架的钢制构件实现的。连接组件设计为保持弹性,从而迫使非弹性活动发生在混合梁中。具有这些连接细节的试样具有超过4.0%的漂移位移能力,完整的磁滞回线以及良好的强度和刚度保持能力。非弹性旋转集中在混合梁中,并占了所施加的大部分漂移,而连接构件则按设计意图弹性地起作用。

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