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Local buckling of stainless steel Ⅰ-sections in fire: Finite element modelling and design

机译:局部屈曲的不锈钢Ⅰ-剖面:有限元建模与设计

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The structural response of stainless steel I-sections in fire is investigated in this paper. Finite element models of stainless steel I-section members, capable of replicating their cross-section behaviour at elevated temperatures, are created and validated against existing experimental data from the literature. The validated finite element models are then utilised to perform comprehensive numerical parametric studies, where over 1000 numerical simulations of the response of stainless steel I-sections in fire are carried out, considering different cross-section dimensions, loading conditions, stainless steel grades and elevated temperature levels. On the basis of the findings from the parametric studies, the existing design rules of the European structural steel fire design standard EN 1993-1-2 and the recent design recommendations of Xing et al. [1], together with the plastic effective width method of Bambach and Rasmussen [2], are assessed in terms of their accuracy and reliability. It is observed that relative to the existing fire design rules set out in EN 1993-1-2, the design methods of Xing et al. [1] and Bambach and Rasmussen [2] are able to provide more accurate and reliable ultimate cross-section resistance predictions for stainless steel I-sections in fire, providing further verification of the suitability of the design provisions of Xing et al. [1] for inclusion in the next revision of EN 1993-1-2.
机译:本文研究了不锈钢I段的结构响应。有限元模型的不锈钢I剖面构件,能够在升高温度下复制其横截面行为,并针对来自文献的现有实验数据进行验证。然后利用验证的有限元模型进行综合数值参数研究,其中考虑到不同的横截面尺寸,装载条件,不锈钢等级和升高,进行了超过1000数值模拟。温度水平。在参数研究的结果的基础上,欧洲结构钢火设计标准的现有设计规则1993-1-2和Xing等人的最新设计建议。 [1],与Bambach和Rasmussen [2]的塑性有效宽度方法一起评估其准确性和可靠性。观察到,相对于Z 1993-1-2中的现有火灾设计规则,xing等人的设计方法。 [1]和Bambach和Rasmussen [2]能够为火中的不锈钢I段提供更准确和可靠的终极横截面电阻预测,可进一步验证xing等人的设计规定的适用性。 [1]纳入在1993-1-2的下一次修订中。

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