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On the local buckling of RHS members under axial force and biaxial bending

机译:关于RHS构件在轴向力和双轴弯曲下的局部屈曲

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摘要

This paper presents the results of a large parametric study concerning the evaluation of the critical local buckling coefficient for thin-walled rectangular hollow section (RHS) members subjected to combined axial load and biaxial bending, accounting for web-flange interaction. The calculation of the half-wavelength leading to the minimum critical local bifurcation load is performed by means of a Generalized Beam Theory specialization, which makes it possible to quickly solve a large set of cases. In particular, taking advantage of the small half wavelength of local buckling, it is assumed that the stresses are uniformly distributed along the member length, making it possible to resort to semi-analytical solutions using sinusoidal half-wave amplitude functions for the GBT cross-section deformation modes. On the basis of the results obtained, the key parameters governing local buckling are identified, leading to easy-to-use charts and closed-form formulae to determine the local buckling coefficient.
机译:本文介绍了一项大型参数研究的结果,该研究涉及评估承受轴向荷载和双轴弯曲的薄壁矩形空心截面(RHS)构件的临界局部屈曲系数,并考虑了腹板-凸缘相互作用。导致最小局部临界分叉载荷的半波长的计算是通过广义波束理论的专业化进行的,这使得可以快速解决大量情况。特别是,利用局部屈曲的小半波长,假设应力沿构件长度均匀分布,从而可以对GBT交叉采用正弦半波振幅函数求半解析解。截面变形模式。根据获得的结果,确定控制局部屈曲的关键参数,从而生成易于使用的图表和封闭式公式来确定局部屈曲系数。

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