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Lipped channel cold-formed steel columns under local-distortional buckling mode interaction

机译:局部变形屈曲作用下唇形槽钢冷弯型钢

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The present research is aimed at verifying design rules for cold-formed steel (CFS) members under axial compression when local-distortional buckling modes (LD) is achieved. Sets of experimental results previously available were applied to calibrate a shell finite element model addressed to survey the structural behavior of CFS lipped channels under LD bucking interaction. A large range of distortional-local slenderness ratio was considered in order to obtain numerical results of LD interaction including strong and weak interaction conditions. Based on both experimental and numerical results, the nature of LD interaction was assessed and the column strength variation was observed according with the representative slenderness variables, lambda(L), lambda(D) and R-lambda DL, respectively local and distortional slenderness factors and distortional-local slenderness ratio lambda(D)/lambda(L). The column strength variation was established based on the Winter-type equation, conceived to cover the complete range of LD interaction. The proposed solution follows the direct strength method concept, is easy to apply and accurate enough for the structural design of lipped CFS columns. Additional research is under way to include other CFS types in the proposed design approach.
机译:本研究旨在验证实现局部变形屈曲模式(LD)时,在轴向压缩下的冷弯型钢(CFS)构件的设计规则。先前可获得的实验结果集用于校准壳有限元模型,以研究在LD屈曲相互作用下CFS唇形通道的结构行为。为了获得包括强相互作用条件和弱相互作用条件的LD相互作用的数值结果,考虑了大范围的变形-局部细长比。根据实验和数值结果,评估了LD相互作用的性质,并根据代表性的细长变量lambda(L),lambda(D)和R-lambda DL分别为局部和变形细长因子,观察了色谱柱强度变化和变形局部细长比λ(D)/λ(L)。立柱强度的变化是基于Winter型方程建立的,涵盖了LD相互作用的整个范围。提出的解决方案遵循直接强度方法的概念,易于应用,并且对于唇形CFS柱的结构设计而言足够准确。正在进行其他研究,以将其他CFS类型包括在建议的设计方法中。

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