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首页> 外文期刊>The IES Journal Part A: Civil & Structural Engineering >GBT-based first-order analysis of elastic-plastic thin-walled steel members exhibiting strain-hardening
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GBT-based first-order analysis of elastic-plastic thin-walled steel members exhibiting strain-hardening

机译:基于GBT的表现出应变硬化的弹塑性薄壁钢构件的一阶分析

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摘要

This paper addresses the development and illustrates the application of a generalised beam theory (GBT) formulation intended to perform first-order elastic-plastic analyses of thin-walled members made of isotropic non-linear materials exhibiting strain-hardening. After presenting an overview of the main concepts and procedures involved in the above GBT formulation, its application is illustrated through the analysis of (i) simply supported Z-section beams and (ii) fixed-ended lipped channel beams. In both cases, a bilinear elastic-plastic material model is adopted, which exhibits three strain-hardening levels, namely E_(sh) = 0 (perfectly plastic model), E_(sh = E/100 and E_(sh) = E/50. The results presented and discussed consist of equilibrium paths, modal participation diagrams, displacement profiles, beam deformed configurations and stress diagrams and contours. For validation purposes, most of the GBT results are compared with values obtained from shell finite element analyses - with a few relatively minor exceptions, a very good correlation is always found. Finally, the paper closes with some remarks concerning the influence of the strain-hardening slope on the structural behaviour of thin-walled steel beams.
机译:本文讨论了这一发展,并说明了广义梁理论(GBT)公式的应用,该公式旨在对表现出应变硬化的各向同性非线性材料制成的薄壁构件进行一阶弹塑性分析。在介绍了上述GBT公式所涉及的主要概念和程序的概述之后,通过分析(i)简支Z形截面梁和(ii)固定端唇形通道梁来说明其应用。在这两种情况下,均采用双线性弹塑性材料模型,该模型具有三个应变硬化级别,即E_(sh)= 0(完全塑性模型),E_(sh = E / 100和E_(sh)= E / 50.提出和讨论的结果包括平衡路径,模态参与图,位移轮廓,梁变形构型以及应力图和轮廓,为了进行验证,将大多数GBT结果与从壳有限元分析获得的值进行比较-最后,本文以应变硬化斜率对薄壁钢结构性能的影响作了一些评论。

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