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首页> 外文期刊>International journal of non-linear mechanics >Mode interaction in thin-walled Ⅰ-section struts with semi-rigid flange-web joints
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Mode interaction in thin-walled Ⅰ-section struts with semi-rigid flange-web joints

机译:半刚性法兰-腹板节点的薄壁Ⅰ型截面支撑杆中的模式相互作用

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摘要

A recently developed variational model that describes the non-linear interaction between the global and local buckling of a thin-walled Ⅰ-section strut under pure compression is extended to include semi-rigid flange-web connections. A formulation combining the Rayleigh-Ritz method and continuous displacement functions is used to derive a system of differential and integral equilibrium equations for the structural component. Cellular buckling, observed in the case where the web is assumed to provide no more than a simple support to the flanges, is found to be rapidly eroded by increasing the connection rigidity, although the local buckling wavelength still reduces as the post-buckling deformation is increased. The model is validated using finite element analysis; the results compare very well particularly when a high rigidity between the section web and flanges is simulated.
机译:最近开发的变分模型被扩展为包括半刚性法兰-腹板连接,该模型描述了纯压缩作用下薄壁Ⅰ型截面支杆的整体屈曲与局部屈曲之间的非线性相互作用。结合瑞利-里兹方法和连续位移函数的公式可用于导出结构构件的微分和积分平衡方程组。在假定腹板仅对凸缘提供简单支撑的情况下观察到的蜂窝屈曲,通过增加连接刚度迅速被侵蚀,尽管局部屈曲波长仍随屈曲后变形而减小。增加。使用有限元分析对模型进行验证;结果比较好,特别是在模拟型材腹板和法兰之间的高刚度时。

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