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首页> 外文期刊>Thin-Walled Structures >Local-global mode interaction in thin-walled inelastic rectangular hollow section struts part 2: Assessment of existing design guidance and new recommendations
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Local-global mode interaction in thin-walled inelastic rectangular hollow section struts part 2: Assessment of existing design guidance and new recommendations

机译:薄壁无弹性矩形空心截面支杆中的局部-全局模式相互作用第2部分:现有设计指南和新建议的评估

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摘要

The second part of the study on the local global mode interaction in thin-walled inelastic rectangular hollow section struts focuses on design guidance. Based on the validated finite element (FE) model from the companion paper, a framework for fully automating FE model generation, submission and post-processing for geometric and material nonlinear analysis with imperfections is first presented. The ultimate load data for specimens with different cross-section aspect ratios, cross-sectional slenderness, global slenderness and welding options are generated. The current design rules for thin-walled welded RHS struts are assessed using the numerical results and existing experimental results from the literature by means of structural reliability analysis in accordance with the methodology presented in Annex D of Eurocode EN1990. A modified Direct Strength Method (DSM) relationship is then proposed and it is demonstrated to provide superior ultimate load predictions than the current guidelines.
机译:薄壁无弹性矩形空心截面支杆中局部全局模式相互作用的研究的第二部分侧重于设计指导。基于随附论文中经过验证的有限元(FE)模型,首先提出了一个完全自动化的有限元模型生成,提交和后处理的框架,用于不完美的几何和材料非线性分析。生成具有不同横截面纵横比,横截面细长度,整体细长度和焊接选项的样品的极限载荷数据。根据欧洲规范EN1990附录D中介绍的方法,通过结构可靠性分析,使用文献中的数值结果和现有实验结果,通过评估数值和现有实验结果,评估当前薄壁RHS支撑杆的设计规则。然后提出了一种改进的直接强度法(DSM)关系,并证明了该关系可提供比当前准则更好的最终载荷预测。

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