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Experimental Research and Finite Element Analysis on Behavior of Steel Frame with Semi-rigid Connections

机译:半刚性连接钢框架行为的实验研究与有限元分析

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Most steel beam-column connections actually show semi-rigid deformation behavior that can contribute substantially to overall displacements of the structure and to the distribution of member forces. Steel frame structure with semi-rigid connections are becoming more and more popular due to their many advantages such as the better satisfaction with the flexible architectural design, low inclusive cost and environmental protect as well. So it is very necessary that studying the behavior of those steel frame under cyclic reversal loading. On the basics of connections experiments the experiment research on the lateral resistance system of steel frame structure has been completed. Two one-second scale, one-bay, two-story steel frames with semi-rigid connections under cyclic reversal loading. The seismic behavior of the steel frames with semi-rigid connections, including the failure pattern, occurrence order of plastic hinge, hysteretic property and energy dissipation, etc, was investigated in this paper. Some conclusions were obtained that by employing top-mounted and two web angles connections, the higher distortion occurred in the frames, and the internal force distributing of beams and columns was changed, and the ductility and the absorbs seismic energy capability of steel frames can be improved effectively.
机译:大多数钢梁柱连接实际上显示了半刚性变形行为,可以基本上贡献结构的整体位移和成员力的分布。由于诸如柔性架构设计的众多优势,钢框架结构具有半刚性连接的钢框架结构越来越受欢迎,以及柔性架构设计,低包容性成本和环境保护,更好。因此,在循环反转荷载下研究钢框架的行为是非常必要的。在连接基础上,实验已经完成了钢框架结构横向电阻系统的实验研究。两个二秒钟,单架,两层钢框架,具有半刚性连接在循环反转载荷下。本文研究了具有半刚性连接的钢框架的地震行为,包括故障模式,塑料铰链,滞后性能和能量耗散等。获得了一些结论,通过采用俯仰和两个幅材角度连接,框架中发生的更高的变形,并且梁和柱的内力分布改变,并且延展性和钢帧的吸收地震能量能力可以是有效改善。

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