首页> 外文期刊>Journal of Constructional Steel Research >Concrete-filled spiral-welded stainless-steel tube long columns under concentric and eccentric axial compression loading
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Concrete-filled spiral-welded stainless-steel tube long columns under concentric and eccentric axial compression loading

机译:同心和偏心轴向压缩荷载下的钢管混凝土螺旋钢管长柱

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Spiral-welded tubes (SWTs) are fabricated by helically bending a steel plate-coil and welding the resulting abutting edges. The cost-effectiveness of concrete-filled stainless-steel tube (CFSST) columns can be improved by using SWTs rather than longitudinally welded tubes as their fabrication is more economical and efficient. However, due to the high level of residual stresses and unique imperfection patterns present in SWTs, such concrete-filled spiral-welded stainless-steel tube (CF-SWSST) columns require separate consideration. Even though most practical columns are 'long columns', where the capacity is length dependant, only the behaviour of CF-SWSST short columns has previously been investigated. To address this research gap, twelve CF-SWSST long columns with effective length to diameter (L-e/D) ratios in the range 10.5-12.0 were tested under axial compression considering end load eccentricity ratios of 0.0.15D and 0.4D and diameter to thickness ratios (D/t) ranging from 62 to 116. A global flexural buckling type failure mode was obtained for all the tested columns similar to that reported for CFSST long columns of other tube types. It was found that the guidelines of several existing design standards relating to mild-steel concrete-filled steel tube (CFST) columns are directly applicable to CF-SWSST long columns under eccentric loading. However, for concentric loading the predictions were non-conservative indicating that separate guidelines are needed for purely axially loaded CF-SWSSTs, including procedures to consider column slenderness effects of CFSSTs distinct from those specified for mild-steel CFSTs. In addition, fibre-element analyses considering unconfined concrete models gave conservative, yet close, predictions of the experimental eccentric axial capacities which was consistent with the experimentally determined negligible level of concrete confinement. (C) 2019 Published by Elsevier Ltd.
机译:螺旋焊接管(SWT)是通过螺旋弯曲钢板卷并焊接所得的邻接边缘而制成的。通过使用SWT而不是纵向焊接管,可以提高混凝土钢管(CFSST)柱的成本效益,因为它们的制造更加经济高效。但是,由于SWT中存在高水平的残余应力和独特的缺陷模式,因此,此类填充混凝土的螺旋焊接不锈钢管(CF-SWSST)柱需要单独考虑。即使最实用的色谱柱是“长色谱柱”,其容量取决于长度,但以前仅研究了CF-SWSST短色谱柱的性能。为了弥补这一研究空白,在轴向压缩条件下测试了十二根CF-SWSST长柱,其有效长径比(Le / D)在10.5-12.0范围内,并考虑了0.0.15D和0.4D的端载荷偏心比以及直径与厚度比率(D / t)在62到116之间。对于所有测试柱,都获得了整体挠曲屈曲型破坏模式,与其他类型的CFSST长柱所报道的相似。已经发现,有关低碳钢混凝土钢管(CFST)柱的几种现有设计标准的指南可直接应用于偏心载荷下的CF-SWSST长柱。但是,对于同心加载,预测是非保守的,这表明纯轴向加载的CF-SWSST需要单独的指南,包括考虑CFSST的柱细长效应与低碳CFST所规定的不同的程序。另外,考虑无约束混凝土模型的纤维元素分析给出了对实验偏心轴向承载力的保守但接近的预测,这与通过实验确定的可忽略的混凝土约束水平是一致的。 (C)2019由Elsevier Ltd.发布

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