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GBT-based local, distortional and global buckling analysis of thin-walled steel frames

机译:基于GBT的薄壁钢框架的局部,变形和整体屈曲分析

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This paper reports research work concerning the use of Generalised Beam Theory (GBT) to analyse the local, distortional and global buckling behaviour of thin-walled, steel frames. After a brief review of the main concepts and procedures involved in performing a GBT buckling analysis, one addresses the formulation and implementation of a GBT-based beam finite element that incorporates local, distortional and global deformation modes - in particular, one describes (ⅰ) the definition of joint elements, which involves providing a relation between the connected member GBT degrees of freedom and the joint generalised displacements, and (ⅱ) thekinematical models adopted to simulate the torsion warping transmission. Next, one uses evidence gathered from shell finite element analyses to establish kinematical constraint conditions that ensure cross-section warping and in-plane displacement compatibility at the frame joints connecting two non-aligned plain or lipped channel members. Finally, one presents and discusses numerical results that make it possible to illustrate the application and show the capabilities of the above GBT-based finite element formulation and implementation. For validation purposes, some GBT-based results (critical buckling loads and mode shapes) are compared with values yielded by shell finite element analyses carried out in the code ANSYS.
机译:本文报道了有关使用广义梁理论(GBT)分析薄壁钢框架的局部,变形和整体屈曲行为的研究工作。在简要回顾了进行GBT屈曲分析所涉及的主要概念和程序后,我们讨论了基于GBT的梁有限元的制定和实现,该梁有限元结合了局部,变形和整体变形模式-特别是,其中一种描述(ⅰ)关节单元的定义,其中包括提供连接的成员GBT自由度和关节广义位移之间的关系,以及(ⅱ)用于模拟扭转翘曲传递的运动学模型。接下来,使用从壳有限元分析中收集的证据来建立运动学约束条件,以确保横截面翘曲和平面位移在连接两个不对齐的普通或唇形槽形构件的框架节点处的相容性。最后,提出并讨论了数值结果,这些数值结果使得可以举例说明该应用程序,并展示了上述基于GBT的有限元公式化和实现的功能。为了进行验证,将一些基于GBT的结果(临界屈曲载荷和振型)与在代码ANSYS中进行的壳有限元分析所得出的值进行比较。

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