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Energy Equations For Elastic Flexural-torsional Buckling Analysis Of Plane Structures

机译:平面结构弹性挠曲-屈曲屈曲分析的能量方程

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摘要

Lateral-torsional buckling is a critical mode of failure of metal structures. When the values of the loadings on a member of a structure reach a limiting state, the member will experience out-of-plane bending and twisting. This type of failure occurs suddenly in members with a much greater in-plane bending stiffness than torsional or lateral bending stiffness. Slender members of a structural system may buckle laterally and twist before their in-plane capabilities can be reached. Energy equations are derived by considering the total potential energy of a beam-column element. The second variation of the total potential energy equal to zero indicates the transition from a stable state to an unstable state, which is the critical condition for buckling. Several energy equations are derived analytically by calculating the second variation of the total potential energy of a double symmetric thin wall beam-column element. In this article, in-plane deformations of the beam-column element are disregarded. Then energy equations are derived expressing in dimensional and non-dimensional forms. These energy equations will be implemented in a future article to derive elastic and geometric stiffness matrices for the beam-column element and calculate the lateral-torsional buckling of plane structures. Examples are provided to show the accuracy of the equations and applications.
机译:横向扭转屈曲是金属结构破坏的关键模式。当结构构件上的载荷值达到极限状态时,构件将经历面外弯曲和扭曲。这种类型的破坏会在面内弯曲刚度比扭转或横向弯曲刚度大得多的构件中突然发生。结构系统的细长构件在达到其平面能力之前可能会横向弯曲并扭曲。能量方程式是通过考虑梁柱单元的总势能得出的。总势能等于零的第二个变化表示从稳定状态到不稳定状态的过渡,这是屈曲的关键条件。通过计算双对称薄壁梁柱单元总势能的第二次变化,可以解析地导出几个能量方程。在本文中,不考虑梁柱单元的面内变形。然后导出能量方程,以尺寸和无量纲形式表示。这些能量方程将在以后的文章中实现,以得出梁柱单元的弹性和几何刚度矩阵,并计算平面结构的横向扭转屈曲。提供了一些例子来说明方程和应用的准确性。

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