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Behaviour and design of high-strength concrete-filled rectangular ferritic stainless steel tubular (CFFSST) short columns subjected to axial compression

机译:高强度混凝土矩形铁素体不锈钢管状(CFFSST)短柱进行轴向压缩的行为和设计

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Concrete-filled stainless steel tubes (CFSSTs) are increasingly applied in current composite structures owing to their excellent performance characterized by aesthetic appearance, high corrosion resistance and durability, and ease of maintenance. Compared with austenitic and duplex stainless steels, ferritic stainless steels have not or contain very low nickel content, achieving lower and more stable material costs. This provides a more viable alternative for structural applications. Additionally, it has been used successfully in corrosive marine environment in a few countries, such as South Africa. However, structural applications of concrete-filled ferritic stainless steel tubular (CFFSST) columns are still limited owing to the dearth of performance data and design guidance. To understand their structural behaviour and to include relevant design recommendations in current design specifications, this paper aims at investigating the compressive behaviour of axially loaded rectangular CFFSST short columns using the nonlinear finite element (FE) modelling. The FE models are developed using ABAQUS software, where two different material constitutive models for the flat and corner portions of the rectangular ferritic stainless steel tubes are incorporated. Close agreement is found between the outputs of FE analysis and existing test results with respect to the failure modes, cross-sectional strengths and axial load-shortening curves. Parametric analysis is then conducted to ascertain the impacts of key variables on the compressive behaviour of the studied CFFSST columns. The obtained numerical results as well as available test results are employed to evaluate the feasibility of current design specifications to design the examined CFFSST columns. Finally, a novel strength design model is proposed and shown to achieve a higher degree of accuracy and consistency of the design predictions.
机译:由于它们的优异性能,其特征在于审美外观,耐腐蚀性和耐用性,以及易于维护,越来越多地应用混凝土的不锈钢管(CFSST)。与奥氏体和双相不锈钢相比,铁素体不锈钢含有或含有非常低的镍含量,实现较低和更稳定的材料成本。这为结构应用提供了更加可行的替代方案。此外,它已在少数几个国家(如南非)的腐蚀性海洋环境中成功使用。然而,由于性能数据和设计指导的缺乏,混凝土填充铁素体不锈钢管状(CFFSST)柱的结构应用仍然有限。要了解其结构行为,并在目前的设计规范中包括相关的设计建议,本文旨在使用非线性有限元(FE)造型来研究轴向装载的矩形CFFSST短柱的压缩行为。 FE模型是使用ABAQUS软件开发的,其中掺入了矩形铁素体不锈钢管的平板和拐角部分的两种不同材料本构模型。在FE分析和现有测试结果的输出之间发现了密切协议,相对于故障模式,横截面强度和轴向载荷缩短曲线。然后进行参数分析以确定关键变量对所研究的CFFSST列的压缩行为的影响。采用所得数值结果以及可用的测试结果来评估当前设计规范的可行性,以设计所检测的CFFSST柱。最后,提出了一种新颖的强度设计模型,并显示了实现设计预测的更高程度的准确性和一致性。

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