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Mechanical performance of hexagonal multi-cell concrete-filled steel tubular (CFST) stub columns under axial compression

机译:六角形多孔混凝土钢管短柱在轴向压缩下的力学性能

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Multi-cell concrete-filled steel tubular (CFST) column is a type of composite members developing from conventional CFST columns. Featuring greater cross-sectional dimensions and the use of internal webs to separate inner concrete into smaller isolated cells, multi-cell CFST columns have been used in super high-rise buildings recently as the main vertical load bearing members. However, existing research on CFST members is mainly focused on conventional single-cell CFST members. To fill this research gap, this paper numerically investigates the mechanical performance of hexagonal multi-cell CFST stub columns under axial compression. A finite element analysis (FEA) model was initially established to simulate the mechanical performance of hexagonal multi cell CFST columns. The FEA model was validated against existing experimental data. The mechanical performance of the multi-cell CFST columns were analysed, including the full-range load versus deformation relationships, the stress distributions of the main components and the distribution of contact stress on each concrete cell. A parametric study was then conducted to investigate the sensitivity of various geometric and material parameters on the compressive behaviour of multi-cell CFST columns. Finally, analytical formulae were derived to predict the axial compressive ultimate strength of hexagonal multi-cell CFST columns. The methods were found to be acceptable with reasonably good accuracy.
机译:多单元混凝土填充钢管(CFST)柱是从常规CFST柱发展而来的一种复合构件。多孔CFST立柱具有更大的横截面尺寸,并使用内部腹板将内部混凝土分隔成较小的隔离隔室,最近已在超高层建筑中用作主要的垂直承载构件。但是,有关CFST成员的现有研究主要集中在常规的单小区CFST成员上。为了填补这一研究空白,本文通过数值研究了六角形多单元CFST短柱在轴向压缩下的力学性能。最初建立了有限元分析(FEA)模型来模拟六角形多室CFST柱的力学性能。 FEA模型已针对现有实验数据进行了验证。分析了多单元CFST柱的力学性能,包括全范围载荷与变形的关系,主要成分的应力分布以及每个混凝土单元上的接触应力分布。然后进行了参数研究,以研究各种几何参数和材料参数对多单元CFST柱压缩行为的敏感性。最后,推导了分析公式,以预测六角形多单元CFST柱的轴向抗压极限强度。发现该方法以合理的良好准确性是可以接受的。

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