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Standardised material properties for numerical parametric studies of stainless steel structures and buckling curves for tubular columns

机译:用于不锈钢结构的数值参数研究的标准材料特性和管状柱的屈曲曲线

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摘要

While the nominal material properties given in material specifications are suitable for design purposes, for the generation of realistic numerical parametric results that are ‘equivalent’ to physical experiments, material properties that are representative of actual structural members are required. Standardised values for these properties are proposed herein. Following analysis of a comprehensive database of material test data from different stainless steel products, values for the yield stress fy, the ultimate tensile stress fu, the strain at ultimate tensile stress εuand the Ramberg-Osgood parameters n and m are proposed. This enables the generation of standardised stress-strain curves for typical austenitic, duplex and ferritic stainless steel sections. Following this, an extensive numerical modelling study, incorporating the proposed standardised material parameters, was carried out to investigate the effect of production route (cold-formed and hot-finished) and material grade (austenitic, duplex and ferritic) on the flexural buckling behaviour and design of stainless steel square, rectangular and circular hollow section compression members. The FE generated flexural buckling data, combined with column test data from the literature, were used to derive a series of buckling curves for the design of stainless steel compression members. The suitability of the proposals was confirmed by means of reliability analysis.
机译:尽管材料规格中给出的标称材料特性适合于设计目的,但为了生成与物理实验“等效”的实际数值参数结果,需要代表实际结构构件的材料特性。本文提出了这些特性的标准值。在分析了来自不同不锈钢产品的材料测试数据的综合数据库之后,提出了屈服应力fy,极限拉伸应力fu,极限拉伸应力εu处的应变以及Ramberg-Osgood参数n和m的值。这样就可以为典型的奥氏体,双相和铁素体不锈钢截面生成标准化的应力-应变曲线。然后,进行了广泛的数值建模研究,结合了建议的标准材料参数,以研究生产路线(冷弯和热精加工)和材料等级(奥氏体,双相和铁素体)对弯曲屈曲行为的影响。不锈钢方形,矩形和圆形空心截面压缩构件的设计。 FE生成的挠曲屈曲数据与文献中的柱测试数据相结合,用于得出用于不锈钢压缩构件设计的一系列屈曲曲线。通过可靠性分析确认了提案的适用性。

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