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Testing and numerical modelling of lean duplex stainless steel hollow section columns

机译:贫双相不锈钢空心截面柱的测试和数值模拟

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Stainless steels are employed in a wide range of structural applications. The austenitic grades, particularly EN 1.4301 and EN 1.4401, and their low-carbon variants EN 1.4307 and EN 1.4404, are the most commonly used within construction, and these typically contain around 8%-11% nickel. The nickel represents a large portion of the total material cost and thus high nickel prices and price volatility have a strong bearing on both the cost and price stability of stainless steel. While austenitic stainless steel remains the most favourable material choice in many applications, greater emphasis is now being placed on the development of alternative grades with lower nickel content. In this study, the material behaviour and compressive structural response of a lean duplex stainless steel (EN 1.4162), which contains approximately 1.5% nickel, are examined. A total of eight stub column tests and twelve long column tests on lean duplex stainless steel square (SHS) and rectangular hollow sections (RHS) are reported. Precise measurements of material and geometric properties of the test specimens were also made, including the assessment of local and global geometric imperfections. The experimental studies were supplemented by finite element analysis, and parametric studies were performed to generate results over a wider range of cross-sectional and member slendemess. Both the experimental and numerical results were used to assess the applicability of the Eurocode 3: Part 1-4 provisions regarding the Class 3 slendemess limit and effective width formula for internal elements in compression and the column buckling curve for hollow sections to lean duplex structural components. Comparisons between the structural performance of lean duplex stainless steel and that of other more commonly used stainless steel grades are also presented, showing lean duplex stainless steel to be an attractive choice for structural applications.
机译:不锈钢可用于各种结构应用中。奥氏体钢种,特别是EN 1.4301和EN 1.4401,以及它们的低碳变体EN 1.4307和EN 1.4404,是建筑中最常用的钢种,通常含有约8%-11%的镍。镍占材料总成本的很大一部分,因此高镍价和价格波动对不锈钢的成本和价格稳定性都有重要影响。尽管奥氏体不锈钢在许多应用中仍是最有利的材料选择,但现在人们越来越重视镍含量较低的替代钢种的开发。在这项研究中,研究了含大约1.5%镍的贫双相不锈钢(EN 1.4162)的材料性能和压缩结构响应。据报道,总共对稀薄双相不锈钢方形(SHS)和矩形中空截面(RHS)进行了八次短管柱测试和十二次长柱测试。还对试样的材料和几何特性进行了精确测量,包括评估局部和整体几何缺陷。通过有限元分析对实验研究进行了补充,并进行了参数研究,以在更大范围的横截面和成员slendemes中产生结果。实验和数值结果均用于评估Eurocode 3:第1-4部分关于压缩内部元素的3级slendemess极限和有效宽度公式以及空心截面到倾斜双工结构部件的柱屈曲曲线的规定的适用性。还介绍了贫双相不锈钢与其他更常用的不锈钢牌号的结构性能之间的比较,表明贫双相不锈钢是结构应用的诱人选择。

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