Experimental study on seismic behavior of frame structures composed of concrete encased columns with L-shaped steel section and steel beams

延展性(地球科学) 结构工程 材料科学 消散 刚度 承载力 失效模式及影响分析 流离失所(心理学) 地震分析 复合材料 工程类 蠕动 心理学 热力学 物理 心理治疗师
作者
Lei Zeng,Ren Wen-ting,Zhengtao Zou,Yi-Guang Chen,Wei Xie,Xianjie Li
标识
DOI:10.12989/eas.2019.16.1.097
摘要

The frame structures investigated in this paper is composed of Concrete encased columns with L-shaped steel section and steel beams. The seismic behavior of this structural system is studied through experimental and numerical studies. A 2-bay, 3-story and 1/3 scaled frame specimen is tested under constant axial loading and cyclic lateral loading applied on the column top. The load-displacement hysteretic loops, ductility, energy dissipation, stiffness and strength degradation are investigated. A typical failure mode is observed in the test, and the experimental results show that this type of framed structure exhibit a high strength with good ductility and energy dissipation capacity. Furthermore, finite element analysis software Perform-3D was conducted to simulate the behavior of the frame. The calculating results agreed with the test ones well. Further analysis is conducted to investigate the effects of parameters including concrete strength, column axial compressive force and steel ratio on the seismic performance indexes, such as the elastic stiffness, the maximum strength, the ductility coefficient, the strength and stiffness degradation, and the equivalent viscous damping ratio. It can be concluded that with the axial compression ratio increasing, the load carrying capacity and ductility decreased. The load carrying capacity and ductility increased when increasing the steel ratio. Increasing the concrete grade can improve the ultimate bearing capacity of the structure, but the ductility of structure decreases slightly.
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