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Dynamic critical load based on different stability criteria for coupled buckling of columns with stiffened open cross-sections

机译:基于不同稳定性标准的动态临界载荷,用于具有开放截面的圆柱的耦合屈曲

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The dynamic coupled buckling loads were determined for the columns with intermediate stiffener subjected to in-plane pulse loading. The pulse loading of a rectangular shape was concerned. Columns made of isotropic material were assumed to be simply supported at loaded ends. A plate model was adopted in the analysis. The discussed problem of interactive buckling is solved by the analytical-numerical method (ANM) using Koiter's perturbations method. The differential equations of motion were obtained from Hamilton's Principle, taking into account all components of inertia forces. In this study, the interactions of two global modes with two local ones were presented. The results obtained by the analytical-numerical method (ANM) were compared with finite element method (FEM)-ANSYS. The dynamic critical loads using the most popular Budiansky-Hutchinson's criterion, the Kleiber-Kotula-Saran's criterion with Kubiak's modifications and the phase plane criterion were determined. New versions of criteria: Kleiber-Kotula-Saran's quasi-bifurcation dynamic criterion and the phase plane criterion were proposed.
机译:确定了带有中间加劲肋的圆柱的动态耦合屈曲载荷,它们承受了平面内脉冲载荷。涉及矩形的脉冲负载。假定由各向同性材料制成的圆柱在负载端简单支撑。分析采用平板模型。讨论的交互式屈曲问题通过使用Koiter摄动法的解析数值方法(ANM)解决。运动的微分方程是从汉密尔顿原理获得的,其中考虑了惯性力的所有分量。在这项研究中,提出了两个全局模式与两个局部模式的相互作用。通过分析数值方法(ANM)获得的结果与有限元方法(FEM)-ANSYS进行了比较。使用最流行的Budiansky-Hutchinson准则,具有Kubiak修改的Kleiber-Kotula-Saran准则和相平面准则确定了动态临界载荷。标准的新版本:提出了Kleiber-Kotula-Saran的准分岔动态准则和相平面准则。

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