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GBT-based buckling analysis of thin-walled members with non-standard support conditions

机译:非标准支撑条件下基于GBT的薄壁构件屈曲分析

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This paper reports on the use of a recently developed Generalised Beam Theory (GBT) formulation, and corresponding finite element implementation, to analyse the local and global buckling behaviour of thin-walled members with arbitrary loading and support conditions - this formulation takes into account longitudinal normal stress gradients and the ensuing pre-buckling shear stresses. After presenting an overview of the main concepts and procedures involved in the performance of a GBT-based (beam finite element) member buckling analysis, one addresses in detail the incorporation of non-standard support conditions, such as (i) full or partial localised displacement or rotation restraints, (ii) rigid or elastic intermediate supports or (iii) end supports corresponding to angle connections. In order to illustrate the application and capabilities of the proposed GBT-based approach, one presents and discusses numerical results concerning cold-formed steel (i) lipped channel beams and (ii) lipped I-section beams and columns with various "non-standard" support conditions - while the beams are acted by uniformly distributed or mid-span point loads, applied at the shear centre axis, the columns are subjected to uniform compression. In particular, it is possible to assess the influence of the different support conditions on the beam and column buckling behaviour (critical buckling loads and mode shapes). For validation purposes, most GBT-based results are compared with values yielded by shell finite element analyses carried out in the code Ansys.
机译:本文报告了使用最近开发的广义梁理论(GBT)公式和相应的有限元实现方法来分析在任意载荷和支撑条件下的薄壁构件的局部和整体屈曲行为-该公式考虑了纵向正应力梯度和随之而来的预屈曲剪切应力。在介绍了基于GBT的(梁有限元)构件屈曲分析的性能涉及的主要概念和程序的概述之后,详细讨论了非标准支撑条件的合并,例如(i)局部或局部局部支撑位移或旋转约束,(ii)刚性或弹性中间支撑,或(iii)对应于角连接的端部支撑。为了说明所提出的基于GBT的方法的应用和功能,人们提出并讨论了有关冷弯型钢(i)唇形槽钢和(ii)唇形截面I型钢和具有各种“非标准”立柱的数值结果。支撑条件-当梁受剪切中心轴施加的均匀分布或中跨点荷载作用时,柱子受到均匀压缩。特别是,可以评估不同支撑条件对梁和柱屈曲行为(临界屈曲载荷和模态形状)的影响。为了进行验证,将大多数基于GBT的结果与通过代码Ansys进行的壳有限元分析得出的值进行比较。

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