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Ultimate strength of H-sections under combined compression and uniaxial bending considering plate interaction

机译:考虑板相互作用的组合压缩和单轴弯曲下H型截面的极限强度

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摘要

The ultimate strength and behavior of steel H-sections are investigated experimentally and theoretically in this paper. The main considered parameters include different combinations of flange and web width-to-thickness ratios and varying axial force ratios, with both major and minor axis bending responses being examined. It is found that the section behavior, including occurrence of local buckling, stress distribution form after buckling and ultimate strength, is strongly dependent on the interaction between flange and web. The "plastic effective width" method (PEM) for the ultimate moment resistance of H-sections bent about strong or weak axis is refined and improved using an adjustment factor, namely cross-section slenderness, which accounts for the interactive effect of the plates under different loading conditions. Finally, PEM is proved to provide satisfactory predictions for H-sections over a spectrum of web and flange width-to-thickness ratios and axial force ratios for both the strong and weak axis bending. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文对H型钢的极限强度和行为进行了实验和理论研究。主要考虑的参数包括法兰和腹板宽厚比的不同组合以及变化的轴向力比,同时检查了主轴弯曲和短轴弯曲响应。结果表明,截面行为,包括局部屈曲的发生,屈曲后的应力分布形式和极限强度,在很大程度上取决于翼缘和腹板之间的相互作用。使用调整因子,即横截面细长度,细化和改进了用于绕强轴或弱轴弯曲的H型截面的极限抗弯矩的“塑性有效宽度”方法(PEM),该因子可解释在以下情况下板的交互作用不同的加载条件。最后,事实证明,PEM可以在横梁和法兰的宽厚比和强力和弱轴弯曲的轴向力比范围内为H型截面提供令人满意的预测。 (C)2017 Elsevier Ltd.保留所有权利。

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