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Classification of I-section flexural members based on member ductility

机译:基于构件延展性的I形弯曲构件分类

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Cross-section classification is a significant concept in the design of flexural steel members as it addresses the susceptibility of a cross-section to local buckling and defines its appropriate design resistance. The present study employs experimentally verified nonlinear finite element modeling techniques to investigate the section classification based on member ductility. Attention is given to the interaction between local and lateral buckling of I-sections and their influence on inelastic flexural ductility for the members subjected to a constant moment. In fact, the section ductility concept is employed in most of the current steel design codes where section behavior is governed by the buckling of flange or web plates for which independent limitations are imposed. This assumption is unreasonable because, obviously, the flange is restrained by the web and the web is restrained by the flanges, so the interaction between the two local buckling modes must be considered. Furthermore at the member level, there are some additional factors that influence the ductility, and as a consequence of these factors, it seems that the above behavioral classes should be substituted by the concept of member behavioral classes. This paper proposes a classification of flexural members based on rotation capacity at the member level for the latest version of the Chinese steel design code which takes into account interaction between local and local-overall buckling modes.
机译:截面分类是挠性钢构件设计中的一个重要概念,因为它解决了截面对局部屈曲的敏感性并定义了其适当的设计阻力。本研究采用经过实验验证的非线性有限元建模技术来研究基于构件延性的截面分类。对于承受恒定力矩的构件,应注意I型截面的局部和横向屈曲之间的相互作用及其对无弹性挠性延展性的影响。实际上,在大多数当前的钢设计规范中都采用了截面延展性概念,其中截面行为由施加独立限制的法兰或腹板的屈曲控制。该假设是不合理的,因为很明显,法兰受腹板约束,腹板受法兰约束,因此必须考虑两个局部屈曲模式之间的相互作用。此外,在成员级别,还有一些影响延展性的其他因素,由于这些因素,似乎上述行为类别应该用成员行为类别的概念代替。本文针对最新版本的中国钢结构设计规范,根据构件级别的旋转能力提出了抗弯构件的分类,其中考虑了局部屈曲和局部整体屈曲模式之间的相互作用。

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