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GBT-Based Buckling Analysis of Thin-Walled Steel Frames with Semi-Rigid Joints

机译:基于GBT的半刚性节点薄壁钢框架屈曲分析

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This paper presents and discusses the available results of an ongoing investigation concerning the use of Generalized Beam Theory (GBT) to analyze the local, distortional and global buckling behavior of thin-walled steel frames with semi-rigid joints. Initially, an overview of the concepts and procedures involved in performing a GBT frame buckling analysis is provided, paying particular attention to the aspects related to ensuring displacement compatibility at the frame joints (between the end cross-sections of non-aligned members). Next, in a first attempt to simulate a frame joint semi-rigidity, linear spring elements, characterized by their stiffness values and relating the appropriate generalized displacements of the converging member end cross-sections, are incorporated into the buckling analysis. Finally, in order to illustrate the application and assess the merits of the above approach to modeling semi-rigid joints, numerical results concerning the buckling behavior of simple L-shaped and portal plane frames are presented and discussed. The frames analyzed (ⅰ) are formed by plain and lipped Ⅰ-section members, (ⅱ) are acted by loadings causing axial compression and in-plane (major-axis) bending, and (ⅲ) exhibit rotational springs at the joints, involving exclusively in-plane bending. The influence of the spring stiffness, which alters the member bending moment diagrams, on the frame buckling behavior (critical buckling load and mode nature) is investigated. For validation purposes, some GBT buckling results are compared with values obtained from ANSYS shell finite element analyses.
机译:本文介绍并讨论了有关使用广义梁理论(GBT)分析半刚性接头薄壁钢框架的局部,变形和整体屈曲行为的正在进行的研究的可用结果。最初,提供了执行GBT框架屈曲分析所涉及的概念和过程的概述,特别注意与确保框架接头(未对准构件的端部截面之间)的位移兼容性有关的方面。接下来,在首次尝试模拟框架节点半刚性时,将以其刚度值为特征并与会聚构件端部横截面的适当广义位移相关联的线性弹簧元件纳入屈曲分析。最后,为了说明该方法的应用并评估上述方法对半刚性接头建模的优点,提出并讨论了有关简单L形和门口平面框架屈曲行为的数值结果。分析的框架(ⅰ)由平直的Ⅰ型截面构件形成,(ⅱ)受引起轴向压缩和面内(主轴)弯曲的载荷作用,并且(ⅲ)在接头处表现出旋转弹簧,涉及仅在平面内弯曲。研究了弹簧刚度(改变了构件弯矩图)对框架屈曲行为(临界屈曲载荷和模态性质)的影响。为了进行验证,将一些GBT屈曲结果与从ANSYS Shell有限元分析获得的值进行比较。

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