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

机译:同心偏心轴压荷载下螺旋钢管混凝土短柱的受力与设计

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Concrete-filled stainless-steel tube (CFSST) columns, which would be more durable than their mildsteel counterparts, are potentially a more economical method of using stainless-steel for structures. Spiral-welded stainless-steel tubes (SWSSTs) could further increase the cost-effectiveness of CFSST columns. SWSSTs are an alternate and advantageous form of welded tube fabricated by welding a helically bent steel plate. The behaviour of concrete-filled SWSST (CF-SWSST) columns can potentially be different to CFSSTs using other tube types, especially due to larger residual stresses present in SWSSTs. Given this background, twelve self-compacting CF-SWSST short columns with nominal diameter-to-thickness ratios (D/t) equal to 51, 76, 101.5 and 114.5 were tested under axial compression considering eccentricities of 0, 0.15D and 0.4D. The observed failure mode, consisting of flexural local buckling, was equivalent to that reported for non-SWT CFSST columns. The spiral weld did not act detrimentally to the strength. Concrete-filled mild-steel tube design standards provided satisfactory predictions of the experimental capacities for CF-SWSSTs under eccentric loading though they were less conservative when the loading was concentric. The need for separate calibration of design guidelines for CF-SWSST short columns was established since, on average, the actual to predicted capacity ratios were noticeably less than those of non-SWT CFSSTs. Fibre-based section analyses using a confined concrete material model gave better predictions of the eccentric axial capacities than codified methods suggesting greater confinement benefit than considered in the standards are applicable to eccentrically loaded CF-SWSST short columns. The study also confirmed equivalent strength behaviour of CF-SWSST short columns to their mild-steel counterparts though with greater ductility. (C) 2019 Elsevier Ltd. All rights reserved.
机译:填充混凝土的不锈钢管(CFSST)柱比低碳钢管更耐用,是将不锈钢用于结构的潜在更经济的方法。螺旋焊接不锈钢管(SWSST)可以进一步提高CFSST色谱柱的成本效益。 SWSST是通过焊接螺旋弯曲的钢板制成的焊接管的另一种有利形式。填充混凝土的SWSST(CF-SWSST)柱的行为可能与使用其他管类型的CFSST有所不同,尤其是由于SWSST中存在较大的残余应力。在这种背景下,考虑了偏心率为0、0.15D和0.4D的情况下,在轴向压缩条件下测试了十二个自压缩CF-SWSST短柱,其公称直径与厚度比(D / t)等于51、76、101.5和114.5。 。观察到的由弯曲局部屈曲组成的破坏模式与非SWT CFSST柱所报道的破坏模式相同。螺旋焊缝对强度没有不利影响。钢管混凝土设计标准为偏心荷载下CF-SWSST的实验能力提供了令人满意的预测,尽管在同心荷载下它们的保守性较低。 CF-SWSST短柱的设计指南需要单独进行校准,因为平均而言,实际产能与预计产能之比明显低于非SWT CFSST。基于纤维的截面分析使用密闭混凝土材料模型,比采用混合方法更好地预测了偏心轴向承载能力,这表明比标准中考虑的更大的约束效益适用于偏心加载CF-SWSST短柱。这项研究还证实了CF-SWSST短柱的强度性能与低碳钢同等,但具有更大的延展性。 (C)2019 Elsevier Ltd.保留所有权利。

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