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A method for the direct evaluation of buckling loads of an imperfect two-bar frame

机译:一种不完全两杆框架屈曲载荷的直接评估方法

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摘要

The pre-critical, critical, and post-critical nonlinear response of an imperfect due to loading eccentricity two-bar frame is thoroughly discussed. In seeking the maximum load-carrying capacity of this non-sway frame, it was qualitatively established that its loss of stability occurs through a limit point and hence, the case of an asymmetric bifurcation can be considered only in an asymptotic sense. After deriving the nonlinear equilibrium equations with unknowns for the two bar axial forces, we can consider such a continuous system as a two-degree-of-freedom model with generalized coordinates the above axial forces. Then, the equilibrium equations and the stability determinant of the frame can be determined in terms of the first and second derivatives of its total potential energy (TPE) with respect to the axial forces. The vanishing of the second variation of the TPE together with the equilibrium equations allows a simple and direct evaluation of the buckling load. Numerical examples demonstrate the efficiency and the reliability of the proposed method.
机译:彻底讨论了由于载荷偏心两杆式框架引起的缺陷的临界前,临界和临界后非线性响应。在寻求该非摇摆框架的最大承载能力时,定性地确定了其稳定性的损失是通过一个极限点发生的,因此,非对称分叉的情况只能在渐近意义上考虑。在推导出两个杆轴向力未知的非线性平衡方程后,我们可以将这样一个连续系统视为具有上述轴向力的广义坐标的两自由度模型。然后,可以根据框架的总势能(TPE)相对于轴向力的一阶和二阶导数来确定框架的平衡方程式和稳定性决定因素。 TPE第二个变化形式的消失以及平衡方程式允许对屈曲载荷进行简单直接的评估。数值算例表明了该方法的有效性和可靠性。

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