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Numerical Modelling of Thin-Walled Stainless Steel Structural Elements in Case of Fire

机译:火灾时薄壁不锈钢结构元件的数值模拟

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In this paper, the structural response of stainless steel thin-walled elements submitted to fire is analysed numerically by means of the geometrically and materially non-linear Finite Element program SAFIR, including imperfections. In order to make these simulations, two main changes in the program were made: (i) the code was changed in order to deal with the stainless steel 2D material constitutive law to be used with shell elements and (ii) the possibility of the program to take into account residual stresses with shell finite elements was introduced. The stainless steel stress-strain relationship at high temperatures was based on the one presented in part 1.2 of Eurocode 3. To model the strain hardening exhibited by the stainless steels, using the shell element formulation, an approximation to the Eurocode 3 constitutive law was needed. Local and global geometrical imperfections were considered in the simulations. The paper shows the influence of the residual stresses on the ultimate load-carrying capacity of thin-walled stainless steel structural elements in case of fire.
机译:在本文中,利用几何和材料非线性有限元程序SAFIR(包括缺陷)对不锈钢薄壁构件的结构响应进行了数值分析。为了进行这些模拟,对程序进行了两个主要更改:(i)更改了代码,以处理要与壳单元一起使用的不锈钢2D材料本构律,以及(ii)程序的可能性考虑到壳体有限元的残余应力。高温下的不锈钢应力-应变关系基于欧洲规范3第1.2部分中介绍的关系。为了模拟不锈钢表现出的应变硬化,使用壳单元公式,需要近似欧洲规范3本构定律。 。在模拟中考虑了局部和整体几何缺陷。本文显示了火灾时残余应力对薄壁不锈钢结构元件的极限承载力的影响。

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