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Experimental and theoretical studies on the seismic performance of CFST battened built-up column piers

机译:CFST加筋组合柱墩抗震性能的实验和理论研究

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摘要

The insufficiency of seismic performance data and the lack of seismic design provisions have affected the application and promotion of the CFST battened built-up column (CFST-BBC) pier in high-intensity areas. To understand the failure mechanism, the energy dissipation capacity, and the hysteretic behavior of the CFST-BBC pier, a total of seven test specimens subjected to lateral cyclic repeated loading were first tested. Meanwhile, a fiber-based finite element model (FFEM) was established by using OpenSees to simulate the seismic behavior of the CFST-BBC pier, and an extended parametric analysis was performed to clarify the impact of key parameters such as material strength, axial compression ratio and slenderness ratio on the seismic performance of the CFST-BBC pier. Finally, theoretical calculation methods for the lateral stiffness, lateral resisting strength and allowable deformation of the CFST-BBC pier were proposed and verified by comparing with experimental and analytical results. It is proved that the calculation results obtained by the proposed methods can effectively reflect the intrinsic characteristics of the seismic performance of the CFST-BBC pier and meet the accuracy requirements of practical engineering applications.
机译:地震性能数据的不足和抗震设计规定的缺乏影响了CFST-BBC墩在高强度地区的应用和推广。为了了解CFST-BBC墩的破坏机理,能量耗散能力和滞后性能,首先对总共七个承受侧向循环反复荷载的试样进行了测试。同时,利用OpenSees软件模拟了CFST-BBC墩的抗震性能,建立了基于纤维的有限元模型(FFEM),并进行了扩展的参数分析,以阐明材料强度,轴向压缩等关键参数的影响。率和细长率对CFST-BBC墩抗震性能的影响。最后,提出了CFST-BBC墩的侧向刚度,侧向抵抗强度和允许变形的理论计算方法,并与实验和分析结果进行了比较。实践证明,所提方法的计算结果可以有效反映CFST-BBC墩抗震性能的内在特征,满足工程实际应用的精度要求。

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