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Analysis of circular concrete-filled double skin tubular slender columns with external stainless steel tubes

机译:带有外部不锈钢管的圆形混凝土双壁钢管细长柱分析

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This paper investigates the strength and behaviour of concrete-filled double skin steel tubular (CFDST) slender columns under axial compression. The lean duplex stainless steel material (EN 1.4162) which has recently gained significant attention is considered herein as the external jacket of such columns. Finite element (FE) analyses of several CFDST columns are conducted. Careful consideration is taken in the modelling for the concrete behaviour, for which both of the compressive and the tensile behaviours and the non-linear behaviour due to cracking are fully considered. The accuracy of the current FE models is ensured through the comparison with the existing columns in literature. A parametric study is then conducted to investigate the behaviour of such columns under different affecting factors; the slenderness ratio, the concrete confinement effect, the hollow ratio, the concrete compressive strength and the thickness ratio. The behavioural differences between intermediate length and very long CFDST columns are carefully addressed. Analytically obtained ultimate strengths are compared with design strengths calculated by European and American specifications. European design strength is found to give better predictions compared to the American specifications. However, it is shown that both strengths cannot be used in design because they overestimate the ultimate strengths and thereby do not satisfy the safety requirements. Therefore, a modification is suggested to the European design model which is shown to be able to estimate the compressive resistance of the CFDST columns more accurately than other methods.
机译:本文研究了在轴向压缩下的钢管混凝土薄壁钢管柱(CFDST)的强度和性能。最近被广泛关注的贫双相不锈钢材料(EN 1.4162)在本文中被视为此类色谱柱的外部护套。对几个CFDST色谱柱进行了有限元分析。在对混凝土行为进行建模时要仔细考虑,为此,要充分考虑到压缩和拉伸行为以及由裂缝引起的非线性行为。通过与文献中现有的列进行比较,可以确保当前有限元模型的准确性。然后进行参数研究,以研究这种柱在不同影响因素下的行为。长细比,混凝土约束效果,空心率,混凝土抗压强度和厚度比。小心解决了中间长度和非常长的CFDST色谱柱之间的行为差​​异。将解析获得的极限强度与根据欧洲和美国规范计算出的设计强度进行比较。与美国规范相比,发现欧洲设计实力可以提供更好的预测。但是,事实表明,这两种强度都不能在设计中使用,因为它们高估了最终强度,因此不能满足安全要求。因此,建议对欧洲设计模型进行修改,使其显示出比其他方法更准确地估计CFDST柱的抗压强度。

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