Local Buckling Behaviour of Steel Sections Subjected to Fire

M. Knobloch
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引用次数: 2

Abstract

The local buckling behavior of steel sections subjected to fire is strongly affected by the nonlinear stressstrain relationship of steel at elevated temperatures, non-uniform temperature distributions as well as thermal strains and stresses. This paper proposes a strain-based calculation model found to be particularly suitable for analyzing the load-carrying behavior of steel members subjected to local buckling and fire. This model uses strain-based capacity curves – based on a plastic mechanism and results of a comprehensive numerical parametric study – for calculating the load-shortening behavior of stiffened and unstiffened elements (internal compression parts and outstand flanges) under fire conditions. Additionally, the model takes into account thermal strains and stresses during heating in fire as well as uniform and nonuniform temperature distributions. Strain-based models avoid classification of cross-sections and consider local buckling even for compact cross-sections. The strain-based calculation model accords well with results obtained from a parametric study using the finite element approach.
火灾作用下钢截面的局部屈曲行为
高温下钢的非线性应力-应变关系、非均匀温度分布以及热应变和热应力对火灾作用下钢截面的局部屈曲行为有很大影响。本文提出了一种基于应变的计算模型,该模型特别适用于分析钢构件在局部屈曲和火灾下的承载行为。该模型使用基于应变的能力曲线-基于塑性机制和综合数值参数研究的结果-来计算在火灾条件下加筋和非加筋元件(内压缩部件和突出的法兰)的载荷缩短行为。此外,该模型还考虑了火灾加热过程中的热应变和热应力,以及均匀和非均匀温度分布。基于应变的模型避免了截面的分类,即使对于致密的截面也考虑了局部屈曲。基于应变的计算模型与有限元方法的参数化研究结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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