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Distortional failure of cold-formed steel beams under uniform bending: Behaviour, strength and DSM design

机译:均匀弯曲下冷弯型钢的变形破坏:性能,强度和DSM设计

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This work reports numerical results concerning cold-formed steel simply supported beams buckling and failing in distortional modes under uniform bending and exhibiting three cross-section shapes, namely (i) lipped channels bent about the major-axis, (ii) zed-sections under skew bending causing uniform flange compression (worst case), and (iii) hat-sections subjected to either major-axis or minor-axis bending (compressed lips in the latter case). Two end support conditions are considered, differing in the warping and local displacement/rotation restraints, which are either completely free or fully prevented. The beams analysed have several cross-section dimension ratios and lengths, in order to assess their influence on the distortional post-buckling behaviour and ultimate strength particular attention is paid to the influence of (i) the flange-web and lip-flange width ratios, and (ii) the critical (distortional) half-wave number. In addition, the beams exhibit different yield stresses, making it possible to cover wide distortional slenderness ranges. After presenting and discussing the numerical elastic and elastic-plastic post-buckling results obtained, consisting of equilibrium paths, deformed configurations, plastic strain distributions, failure moments and collapse mechanisms, the paper shows that the currently codified Direct Strength Method (DSM) design curve fails to predict adequately the failure moments of some of the beams analysed and addresses the development/proposal of novel DSM strength curves, providing better quality predictions of all the numerical failure moments available.
机译:这项工作报告了关于在均匀弯曲下具有三种横截面形状的冷弯型钢简支简支梁屈曲和破坏模式的数值结果,即(i)绕长轴弯曲的弯曲通道,(ii)偏斜弯曲导致均匀的法兰压缩(最坏的情况),以及(iii)帽形截面经受长轴或短轴弯曲(在后一种情况下受压唇缘)。考虑了两个端部支撑条件,它们在翘曲和局部位移/旋转约束方面有所不同,这些约束条件是完全自由的或完全避免的。分析的梁具有多个横截面尺寸比和长度,以评估其对变形后屈曲行为和极限强度的影响,尤其要注意(i)法兰腹板和唇缘宽度比的影响,以及(ii)临界(变形)半波数。另外,梁表现出不同的屈服应力,从而可以覆盖宽的变形细长范围。在介绍并讨论了获得的数值弹性和弹塑性后屈曲结果后,包括平衡路径,变形构型,塑性应变分布,破坏力矩和坍塌机理,论文显示了目前已编纂的直接强度法(DSM)设计曲线未能充分预测某些已分析梁的破坏时刻,并无法解决新型DSM强度曲线的开发/建议,从而无法对所有可用的数值破坏时刻提供更好的质量预测。

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