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首页> 外文期刊>Journal of Constructional Steel Research >Experimental and numerical study on member classification of I-section plate girders
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Experimental and numerical study on member classification of I-section plate girders

机译:工字型板梁成员分类的试验与数值研究

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摘要

Section classification is adopted by modern design codes and standards as a basic step in design process. Web flange interaction is a significant feature that influence cross-sectional behavior but generally not included herein. Moreover, the overall member stability is also not considered during the classification procedure, which is an influential parameter in ultimate strength capacity. Besides the lack of considerations on interaction effects, the web resistance to shear buckling has to be investigated as well, especially for fabricated I-section plate girders. Tests of four specimens with high shear ratio are presented and investigated. It is observed that the features of local budding of the constituent cross-sectional plate elements and the global lateral-torsional mode are closely inter-related. Insufficiencies in existing design methods are highlighted accordingly. The experimentally verified numerical modeling is carried out to conduct the parametric study. A member classification proposal based on normalized strength capacity is handed in for future Chinese steel design codes in a simple and plain form. Interactions between web-flange plate elements and local-global buckling modes are taken into account.
机译:现代设计规范和标准采用节分类作为设计过程中的基本步骤。腹板凸缘相互作用是影响横截面行为的重要特征,但是通常不包括在本文中。此外,在分类过程中也没有考虑整体的构件稳定性,这是极限强度能力的重要参数。除了对相互作用的影响没有考虑之外,还必须研究腹板的抗剪切屈曲性,特别是对于制造的I型截面板梁。介绍并研究了四个具有高剪切比的试样的测试。观察到,组成横截面板元件的局部出芽特征与整体横向扭转模式密切相关。相应地强调了现有设计方法的不足。进行了实验验证的数值建模以进行参数研究。将基于归一化强度能力的成员分类提案以简单明了的形式提交给未来的中国钢结构设计规范。腹板法兰板单元与局部-整体屈曲模式之间的相互作用被考虑在内。

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