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Numerical study of fire resistance of stainless steel circular hollow section columns

机译:不锈钢圆形空心柱耐火性的数值研究

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摘要

Stainless steel has countless desirable characteristics for a structural material. Although initially more expensive than conventional carbon steel, stainless steel structures can be competitive due to their smaller need for fire protection material and lower life-cycle cost, thus contributing to a more sustainable construction. The most common stainless steel groups used in structural applications are the austenitic, ferritic and austenitic-ferritic (also known as Duplex grades). This work presents a numerical study on the behaviour of stainless steel circular hollow section members under axial compression at elevated temperatures, with different cross-section slenderness. The numerically obtained ultimate load-bearing capacities are compared with simplified calculation formulae from Eurocode 3 for columns under fire situation. A parametric study, considering different stainless steel grades from the aforementioned groups, cross-sectional classes and slendernesses, is here presented for different elevated temperatures. The numerical analyses were performed with the finite element programme SAFIR, with material and geometric non-linear analysis considering imperfections.Comparisons between the numerical results and the Eurocode 3 rules demonstrated that a specific design approach must be developed for stainless steel columns under fire situation.
机译:不锈钢具有无数的结构材料的理想特性。虽然最初比传统碳钢更昂贵,但由于较小的防火材料需求和更低的生命周期成本,不锈钢结构可能具有竞争力,因此有助于更可持续的建筑。结构应用中使用的最常见的不锈钢组是奥氏体,铁素体和奥氏体铁素体(也称为双链等级)。该工作提出了升高温度下轴向压缩下不锈钢圆形中空部分构件的行为的数值研究,具有不同的横截面细长。将数值获得的最终承重容量与来自欧古代码3的简化计算公式进行了比较,以在火情况下为列。考虑来自上述组,横截面类和纤维的不同不锈钢等级的参数研究在这里呈现出不同的升高的温度。用有限元件SAFIR进行数值分析,考虑到不完美的数值和几何非线性分析,考虑了数值结果和欧元展3规则之间的缺陷,表明,必须在火灾情况下为不锈钢柱开发特定的设计方法。

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