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DSM design of CFS columns subject to distortional buckling at elevated temperatures

机译:CFS柱的DSM设计在高温下扭曲弯曲

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Cold-formed steel (CFS) columns are subject to distortional buckling unlike hot-rolled steel columns. Many experimental and numerical investigations have been conducted on the distortional buckling behaviour and capacity of CFS columns at ambient and elevated temperatures. However, constitutive laws of CFS at ambient and elevated temperatures are different with varying levels of nonlinear stress-strain characteristics. Thus, the ultimate distortional buckling capacities predicted by the elevated temperature design rules can be unconservative when the ambient temperature design equations are used with elevated temperature mechanical properties. However, no study has fully incorporated the effects of nonlinear stress-strain characteristics of CFS at elevated temperatures. Therefore, this research study investigated the effects of nonlinear elevated temperature stress-strain characteristics on the distortional buckling capacities of CFS columns using three parameters, namely, nonlinearity, strain hardening and yield strength to Young's modulus ratio, through a numerical parametric study. A comparison of ultimate capacities from the parametric study with those predicted by the current AS/NZS 4600 direct strength method (DSM) showed that the current design equations cannot accurately capture the effects of nonlinear elevated temperature stress-strain characteristics. Consequently, modified DSM equations were proposed to accurately predict the distortional buckling capacities of CFS columns at elevated temperatures.
机译:与热轧钢柱不同,冷成型钢(CFS)柱受到扭曲弯曲。在环境和升高的温度下,已经对扭曲屈曲行为和CFS柱的容量进行了许多实验和数值研究。然而,在环境温度和升高的温度下CFS的组成型法与不同水平的非线性应力 - 应变特征不同。因此,当环境温度设计方程与升高的温度机械性能一起使用时,通过升高的温度设计规则预测的最终扭曲屈曲容量可能是难以置信的。然而,没有研究完全掺入了CFS在升高温度下的非线性应力 - 应变特性的影响。因此,本研究研究通过数值参数研究,研究了使用三个参数,即非线性,应变硬化和杨氏模量比的杨氏柱的扭曲屈曲容量对CFS柱的扭曲屈曲能力的影响。与电流AS / NZS 4600直接强度法(DSM)预测的那些比较终极能力的比较表明,电流设计方程不能准确地捕获非线性升高的温度应变特性的影响。因此,提出了改进的DSM方程,以准确地预测升高温度下CFS柱的扭曲屈曲容量。

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