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On the distortional-global interaction in cold-formed steel columns: Relevance, post-buckling behaviour, strength and DSM design

机译:关于冷弯型钢柱的变形-整体相互作用:相关性,屈曲后行为,强度和DSM设计

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This work reports the available results of an ongoing numerical (shell finite element) investigation on the post-buckling behaviour, strength and design of fixed-ended cold-formed steel columns undergoing distortional-global (D-G) interaction. Columns with different cross-section shapes are analysed, namely plain lipped channel (LC), web-stiffened lipped channel (WSLC) and zed-section (Z) columns, in order to investigate distinct D-G interaction natures: involving either distortional and (global) flexural-torsional buckling (LC and WSLC columns) or distortional and (global) minor-axis flexural buckling (Z columns). In particular, the relevance of these D-G interaction types is discussed, by assessing when they affect visibly the column ultimate strength and/or failure mode. The results presented and discussed concern columns with various geometries and yield stresses, thus ensuring a wide variety of range combinations involving (i) global-to-distortional critical buckling load ratios (RGD) and (ii) squash-to-non critical buckling (distortional or global) load ratios (R-y) and leading to non-negligible failure load erosion. The possible occurrence and failure load impact of "secondary (distortional or global)-bifurcation D-G interaction" (R-GD 1.0 or R-GD 1.0 and high R-y) are investigated- it is well known that such impact may be significant in columns experiencing "true D-G interaction" (R-GD approximate to 1.0). The above results consist of (i) relevant non-linear (elastic and elastic-plastic) equilibrium paths, (ii) deformed configuration evolutions along those paths, evidencing D-G interactive effects, and (iii) figures providing the failure mode characterisation. Then, the numerical failure load data obtained are compared with their predictions by (i) the currently codified DSM (Direct Strength Method) column global and distortional strength curves, and (when necessary) (ii) proposed DSM-based design approaches, specifically developed to handle D-G interactive failures- a few design considerations are drawn from these comparisons. (C) 2017 Published by Elsevier Ltd.
机译:这项工作报告了正在进行的数值(壳有限元)研究的屈曲后行为,强度和经受变形-整体(D-G)相互作用的固定端冷弯型钢柱设计的可用结果。分析具有不同横截面形状的柱,即普通唇形通道(LC),腹板刚性唇形通道(WSLC)和Z形截面(Z)柱,以研究不同的DG相互作用性质:涉及变形和(整体) )弯曲扭转屈曲(LC和WSLC柱)或扭曲和(全局)短轴弯曲屈曲(Z柱)。特别是,通过评估D-G相互作用类型何时明显影响柱的最终强度和/或破坏模式,讨论了它们的相关性。呈现和讨论的结果涉及具有不同几何形状和屈服应力的圆柱,从而确保了多种范围的组合,包括(i)整体-变形临界屈曲载荷比(RGD)和(ii)壁球-非临界屈曲(畸变或整体负载率(Ry),并导致不可忽略的失效负载侵蚀。研究了“次要(变形或全局)-分叉DG相互作用”(R-GD <1.0或R-GD> 1.0和高Ry)的可能发生和破坏载荷的影响-众所周知,这种影响在遇到“真正的DG相互作用”(R-GD大约为1.0)的列。以上结果由(i)相关的非线性(弹性和弹塑性)平衡路径,(ii)沿那些路径的变形构型演化,证明D-G相互作用效应以及(iii)提供故障模式特征的图组成。然后,通过以下方式将获得的数值破坏载荷数据与其预测值进行比较:(i)当前已编纂的DSM(直接强度方法)柱的整体和变形强度曲线,以及(必要时)(ii)专门提出的基于DSM的设计方法处理DG交互式故障-从这些比较中得出一些设计注意事项。 (C)2017由Elsevier Ltd.发布

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