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Overall buckling behaviour of circular concrete-filled dual steel tubular columns with stainless steel external tubes

机译:带有不锈钢外管的圆形钢管混凝土双柱整体屈曲性能

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摘要

Recently, a short composite column consisting of dual steel tubes (external and internal stainless and carbon steel tubes, respectively) with concrete filled in the entire tubular section has been introduced. This column, called as the concrete-filled dual steel tubular (CFDST) column, proved that a lower cost as well as weight can be achieved compared with the concrete-filled stainless steel tubular column (CFSST). This is mainly attributed to the increased strength of the concrete fill, inside the internal tube, that is surrounded by both the external and internal steel tubes. Based on the fact that the columns are generally slender in practice, this paper investigates numerically, by means of finite element (FE) analyses, the axial compressive behaviour of the CFDST slender columns, which has been rarely investigated in literature. The external tubes are currently made of the lean duplex stainless steel material recently attracted the structural community because of its relatively lower cost. The FE models carefully consider the compressive and tensile nonlinear behaviour of the concrete. The FE models are verified for their different material models. This is followed by examining the accurate overall buckling behaviour of the slender columns. This has been made through FE comparisons with tested columns of different cross-section types existing in literature. The fundamental behaviour of the CFDST slender columns under the effect of the slenderness ratio, the concrete confinement effect and the concrete compressive strength is then investigated. The study additionally addresses the differences in behaviour between the intermediate length and long CFDST columns. Moreover, the comparison between the design strengths calculated by Eurocode 4 from one side and the FE and experimental ultimate strengths from the other side shows generally that Eurocode 4 gives unsafe predictions. Accordingly, a modified European design model is suggested at the end to predict accurately the resistance of the CFDST slender columns under axial compression.
机译:最近,一种短复合柱被引入,该复合柱由双钢管(分别为外部和内部不锈钢钢管和碳钢管)组成,并在整个管状截面中填充了混凝土。该塔被称为混凝土双钢管柱(CFDST),证明了与不锈钢双管柱(CFSST)相比,成本和重量均可降低。这主要归因于在内管内部被外钢管和内钢管包围的混凝土填充物强度的提高。基于柱在实践中通常是细长的事实,本文通过有限元(FE)分析对CFDST细长柱的轴向压缩行为进行了数值研究,而文献中很少对此进行研究。外管目前由稀薄双相不锈钢材料制成,由于其相对较低的成本,最近吸引了结构界的注意。有限元模型仔细考虑了混凝土的压缩和拉伸非线性行为。验证了FE模型的不同材料模型。然后检查细长柱的准确整体屈曲行为。这是通过与文献中现有的不同横截面类型的测试柱进行FE比较而得出的。然后研究了CFDST细长柱在细长比,混凝土约束效应和混凝土抗压强度的影响下的基本行为。该研究还解决了中长柱和长CFDST柱在行为上的差异。此外,欧洲规范4从一侧和有限元计算的设计强度与另一侧的实验极限强度之间的比较通常表明,欧洲规范4给出了不安全的预测。因此,最后提出了改进的欧洲设计模型,以准确预测CFDST细长柱在轴向压缩下的抵抗力。

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