首页> 外文期刊>International journal of structural stability and dynamics >GBT-BASED BUCKLING ANALYSIS OF THIN-WALLED STEEL FRAMES WITH ARBITRARY LOADING AND SUPPORT CONDITIONS
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GBT-BASED BUCKLING ANALYSIS OF THIN-WALLED STEEL FRAMES WITH ARBITRARY LOADING AND SUPPORT CONDITIONS

机译:任意载荷和支撑条件的薄壁钢框架基于GBT的屈曲分析

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摘要

This paper is concerned with the development and application of a Generalized Beam Theory (GBT) formulation to analyse the local and global buckling behavior of thin-walled steel plane and space frames with arbitrary loadings and various support conditions. This formulation takes into account the geometrical effects stemming from the presence of longitudinal normal stress gradients and also the ensuing pre-buckling shear stresses. Following a description of the main concepts and procedures involved in determining the finite element and frame linear and geometric stiffness matrices (incorporating the influence of joints, applied loading and support conditions), one presents and discusses some numerical results concerning the local and global buckling behavior of (i) simple "L-shaped" frames and (ii) space frames formed by two symmetrical portal frames joined through a transverse beam. For validation purposes, the GBT based results are compared with those obtained by rigorous shell finite element analyses using ANSYS. An excellent correlation, for both the critical buckling loads and mode shapes, is found in all cases.
机译:本文涉及广义梁理论(GBT)公式的开发和应用,该公式可用于分析薄壁钢飞机和空间框架在任意载荷和不同支撑条件下的局部和整体屈曲行为。该公式考虑到了由于纵向法向应力梯度的存在以及随后产生的预屈曲剪切应力而产生的几何效应。在描述了确定有限元和框架的线性和几何刚度矩阵(包括关节的影响,所施加的载荷和支撑条件)所涉及的主要概念和过程之后,我们提出并讨论了有关局部和整体屈曲行为的一些数值结果(i)简单的“ L形”框架和(ii)由通过横梁连接的两个对称门框形成的空间框架。为了进行验证,将基于GBT的结果与使用ANSYS进行严格的壳有限元分析得到的结果进行比较。在所有情况下,对于临界屈曲载荷和模态形状都具有极好的相关性。

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