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GBT-based buckling mode decomposition from finite element analysis of thin-walled members

机译:薄壁构件基于GBT的屈曲模式分解

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摘要

This paper presents an original method based on the Generalised Beam Theory (CBT) capable to decompose the elastic buckling modes from a shell finite element analysis (FEA) of an isotropic thin-walled member, into pure buckling modes of global, distorsional or local nature. The main novelty lies in using only the GBT cross-sectional deformation modes instead of member base mode shapes. The contribution of each pure buckling mode can be calculated, allowing a better understanding of the member post-buckling behaviour and strength reserve. Following the GBT classical assumptions, the membrane shear strains and transverse extensions are neglected. The modal participations obtained from FEA are in good agreement with the values calculated via classical GBT approach.
机译:本文提出了一种基于广义梁理论(CBT)的原始方法,该方法能够将各向同性薄壁构件的壳有限元分析(FEA)中的弹性屈曲模式分解为具有全局,变形或局部性质的纯屈曲模式。主要的新颖之处在于仅使用GBT截面变形模式,而不使用构件基础模式形状。可以计算每个纯屈曲模式的贡献,从而可以更好地了解构件的屈曲后行为和强度储备。遵循GBT的经典假设,忽略了膜的剪切应变和横向延伸。从FEA获得的模态参与与通过经典GBT方法计算的值非常一致。

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