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Distortional-global interaction in lipped channel and zed-section beams: Strength, relevance and DSM design

机译:唇形通道和Z形截面梁中的变形-整体相互作用:强度,相关性和DSM设计

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This work aims at presenting and discussing numerical results concerning the post-buckling behaviour, strength and design of cold-formed steel simply supported lipped channel and zed-section beams under uniform bending and undergoing distortional-global (D-G) interaction - two different support conditions are considered in the lipped channel beams. The relevance of the interaction effects is assessed by identifying the beams whose ultimate strength and/or failure mode are visibly affected by them. Distinct (i) global-to-distortional critical buckling moment ratios (R-GD) and (ii) yield-to-non-critical buckling (distortional or global) moment ratios (R-y) are considered, which are expected to lead to different failure mode natures (global, distortional or interactive). For each beam type, combinations of 41 geometries and 11 yield stresses are considered, in order (i) to characterise the beams experiencing "true D-G interaction" (R-GD approximate to 1.0) and "secondary global-bifurcation D-G interaction" (R-GD 1.0 and high 12,,) and (ii) to investigate the possible occurrence of "secondary distortional bifurcation D-G interaction"(R-GD 1.0 and high R-y). Moreover, an in-depth investigation on the elastic post buckling behaviour is carried out, to assess how the initial geometrical imperfection shape/configuration influences the behaviour and strength of beams prone to D-G interaction. The results presented consist of (i) relevant non-linear equilibrium paths, (ii) deformed configuration evolutions along those paths and (iii) figures providing the failure mode characterisation. Then, the numerical failure moments obtained are compared with their predictions by means of (i) the currently available Direct Strength Method (DSM) beam distortional and global strength curves, and also (if necessary) (ii) proposed DSM-based design approaches, specifically developed to handle beam D-G interactive failures.
机译:这项工作旨在呈现和讨论关于在均匀弯曲并经受变形-全局(DG)相互作用的冷弯型钢简支唇形槽钢和Z型截面梁的屈曲后行为,强度和设计的数值结果-两种不同的支撑条件在唇形通道梁中被考虑。通过确定其最终强度和/或破坏模式明显受其影响的梁,可以评估相互作用效应的相关性。考虑了不同的(i)整体屈曲临界弯矩比(R-GD)和(ii)屈服屈曲非临界屈曲矩(变形或全局)弯矩比(Ry),预计会导致不同故障模式的性质(全局,变形或交互)。对于每种梁类型,考虑41种几何形状和11种屈服应力的组合,以便(i)表征经历“真实DG相互作用”(R-GD大约为1.0)和“次级全局分叉DG相互作用”(R -GD> 1.0和高12 ,,和(ii)研究“二次畸变分叉DG相互作用”(R-GD <1.0和高Ry)的可能发生。此外,对弹性后屈曲行为进行了深入研究,以评估初始几何缺陷形状/构型如何影响易于发生D-G相互作用的梁的行为和强度。给出的结果包括(i)相关的非线性平衡路径,(ii)沿这些路径的变形构型演变,以及(iii)提供故障模式特征的图形。然后,通过(i)当前可用的直接强度法(DSM)梁变形和整体强度曲线,以及(如有必要)(ii)建议的基于DSM的设计方法,将获得的数值破坏矩与其预测值进行比较。专为处理梁DG交互式故障而开发。

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