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Numerical investigation on the performance of concrete-filled double-skin steel tubular members under tension

机译:双层钢管混凝土受拉性能的数值研究

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This paper presents a numerical investigation on the tensile behaviour of concrete-filled double-skin steel tubular (CFDST) member. A comprehensive finite element (FE) model is established and calibrated against the test results for the CFDST members under concentric and eccentric tension. The comparison shows that the proposed FE model is capable to capture the structural behaviour of the tensile specimens. Parametric studies are then conducted to investigate the influence of some key parameters, such as the material strength, the nominal steel ratio and the hollow ratio on the tensile behaviour of composite members. The steel-concrete composite action, the effect of loading paths and the tension-bending interaction diaphragm are also discussed. It is found that the tensile strength of the member depends on the composite action between steel tubes and sandwich concrete, and the tension-bending interaction diaphragm can be represented by a simple linear relationship. Finally, the design equation to predict the tensile strength of CFDST member is proposed, and the comparison results show that the proposed equation has a good accuracy.
机译:本文提出了对混凝土双壁钢管(CFDST)构件拉伸性能的数值研究。建立了一个综合有限元(FE)模型,并针对同心和偏心拉力下CFDST构件的测试结果进行了校准。比较表明,所提出的有限元模型能够捕获拉伸试样的结构行为。然后进行参数研究,以研究一些关键参数的影响,例如材料强度,标称钢比和空心比对复合材料构件拉伸性能的影响。还讨论了钢-混凝土的复合作用,加载路径的影响和拉弯相互作用膜片。发现该构件的抗拉强度取决于钢管和夹心混凝土之间的复合作用,并且可以通过简单的线性关系来表示该弯曲-弯曲相互作用膜片。最后,提出了预测CFDST构件抗拉强度的设计方程,比较结果表明,该方程具有较好的精度。

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