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Behavior of hexagonal multicell CFST columns under lateral cyclic loads: Experimental study

机译:横向循环载荷下六角形多晶体CFST柱的行为:实验研究

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摘要

Multicell concrete-filled steel tubulars (MCFSTs) have been widely utilized in super-high-rise buildings. Hexagonal six-cell CFST columns have received attention from scholars, and a series of investigations have been conducted. However, investigations on their behavior under lateral cyclic loads are rare. Hence, 8 samples were designed, and an experimental study was conducted under lateral cyclic loads. The parameters included 3 loading directions (strong axis, 45 degrees, and weak axis), 2 axial loads (750 kN and 1500 kN), and 2 types of cross-sectional structures (angle steel-reinforced type and basic type). Analysis was conducted on bearing capacity, the failure mode, ductility, residual deformation, accumulated energy dissipation and strain development. The experimental results indicate that the angle steel can decrease the residual deformation and improve the accumulated energy dissipation and bearing capacity of samples. The performances of samples under different loading directions were significantly different. With the loading directions changing from the strong axis to the weak axis, the accumulated energy dissipation and bearing capacity decreased. The influence of the axial load ratio was related to the loading direction. A calculation model using the fiber-based method was established considering the differences among the different cells. According to the calculation results of this method, the limit axial load ratio decreased with the loading directions changing from the strong axis to the weak axis. The stress-strain relationships of plain concrete and confined concrete based on single-cell CFSTs were conservative in predicting the F-Delta curves, and the error increased with an increasing axial load ratio, while the separation model showed the best agreement.
机译:多电池混凝土钢管(MCFST)已广泛用于超高层建筑。六角形六胞CFST列受到学者的关注,并进行了一系列调查。然而,对横向循环载荷下的行为的调查是罕见的。因此,设计了8个样品,并且在横向循环载荷下进行实验研究。参数包括3个加载方向(强轴,45度和弱轴),2个轴向载荷(750kN和1500kn),以及2种类型的横截面结构(角度钢筋型和基本类型)。对承载能力,破坏模式,延展性,残余变形,累积能量耗散和应变发育进行分析。实验结果表明,角钢可以降低剩余变形,提高样品的累积能量耗散和承载力。不同装载方向下样品的性能显着不同。随着装载方向从强轴改变到弱轴,累积的能量耗散和承载力降低。轴向载荷比的影响与装载方向有关。考虑到不同细胞之间的差异,建立了使用基于光纤的方法的计算模型。根据该方法的计算结果,极限轴向载荷比随着从强轴改变到弱轴的装载方向而降低。基于单细胞CFST的普通混凝土和密闭混凝土的应力 - 应变关系是保守的预测F-DELTA曲线,并且误差增加了轴向载荷比率,而分离模型显示了最佳协议。

著录项

  • 来源
    《Engineering Structures》 |2021年第1期|111700.1-111700.13|共13页
  • 作者单位

    Beijing Univ Technol Coll Architecture & Civil Engn Beijing 100124 Peoples R China;

    Beijing Univ Technol Coll Architecture & Civil Engn Beijing 100124 Peoples R China;

    Beijing Univ Technol Coll Architecture & Civil Engn Beijing 100124 Peoples R China;

    Railway Engn Consulting Grp Co Ltd Beijing 100055 Peoples R China;

    Beijing Univ Technol Coll Architecture & Civil Engn Beijing 100124 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hexagonal multicell; CFST column; Lateral cyclic load; Experimental study; Fiber-based method;

    机译:六角形多晶体;CFST柱;横向循环载荷;实验研究;基于纤维的方法;
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