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Axisymmetric simulation of circular concrete-filled double-skin steel tubular short columns incorporating outer stainless-steel tube

机译:具有外不锈钢管的圆形混凝土双层钢管短柱轴对称仿真

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摘要

A concrete-filled double-skin steel tubular (CFDST) column incorporating an outer stainless-steel tube and a high strength inner carbon steel tube exhibits high corrosion resistance and load-carrying capacity. This paper presents the axisymmetric analysis technique for simulating the structural response of short circular CFDST columns loaded concentrically. The double-skin confinement mechanism for modeling the sandwiched concrete is explored and implemented in the analysis. The significant strain hardening response of stainless steel in axial compression is recognized in the analysis technique. The benefits of axisymmetric analysis over the full threedimensional simulation are highlighted for the analysis of a member which is symmetric about its rotation vertical axis. The comparison of axisymmetric analysis results is made with the experimental results given in the previous independent studies. The parametric investigation on the structural response of CFDST columns is performed by means of using the verified axisymmetric model. The analysis results indicate that the inner tube diameter-to-thickness ratio less than 40 should be selected to prevent its local buckling from occurring and the inner tube should have yield stress higher than the 0.2% proof strength of the outer stainless steel tube. The outer stainless-steel with proof stress of 195 MPa should be filled with high-strength concrete of 120 MPa to ensure the strain compatibility. Liang's design model closely estimates the ultimate axial strengths of the CFDST columns composed of an outer stainless-steel tube and a high-strength inner carbon steel tube.
机译:填充外部不锈钢管和高强度内碳钢管的混凝土双层钢管(CFDST)柱具有高耐腐蚀性和承载能力。本文介绍了模拟同心加载的短圆形CFDST柱结构响应的轴对称分析技术。探讨和实施了用于建模夹层混凝土的双皮肤监禁机制。在分析技术中识别出轴向压缩中不锈钢的显着应变硬化响应。突出显示对对称的旋转垂直轴对称的构件的轴对称分析对完全三维模拟的好处。轴对称分析结果的比较是在先前独立研究中给出的实验结果进行的。通过使用验证的轴对称模型进行CFDST列的结构响应的参数研究。分析结果表明,应选择小于40的内管直径与厚度比,以防止其局部屈曲,并且内管应具有高于外不锈钢管的0.2%的屈服应力。具有195 MPa的防焊应力的外不锈钢应填充高强度混凝土120 MPa,以确保应变兼容性。梁的设计模型密切估计了由外不锈钢管和高强度内碳钢管组成的CFDST柱的终极轴向强度。

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