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Minimum weight of cold-formed steel sections under compression

机译:压缩状态下冷弯型钢的最小重量

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This paper presents a combined theoretical and experimental study on the minimum weight and the associated optimal geometric dimensions of an open-channel steel section with given length subjected to a prescribed axial compressive load. Sections both with and without lips are analyzed. The results obtained using a nonlinearly constrained optimization method are compared with those estimated from a simple-minded optimization procedure that assumes the simultaneous occurrence of all failure modes in a minimum weight structure. The types of failure mode considered include yielding, flexural buckling, torsional-flexural buckling, and local buckling. The failure criterion is based purely on compressive strength, with other possible design constraints (e.g. bending stiffness, minimum gauge and cost) ignored. The effects of end support conditions and restraint on torsional buckling are examined. The load capacity of a C-section calculated according to the 1998 British Standard Institution's specifications on Structural Use of Steelwork in Building is used to check the validity of theoretical predictions. Finally, two new C-sections with lips were designed and manufactured based on the optimal results, and tested. Test results confirm the analytical predictions, with the optimal C-sections performing much better than the existing ones.
机译:本文提出了一种结合理论和实验研究的方法,研究了在给定长度下,明渠钢截面的最小重量和相关的最佳几何尺寸,它们承受了规定的轴向压缩载荷。分析有和没有嘴唇的部分。将使用非线性约束优化方法获得的结果与从简单思想的优化过程中估算的结果进行比较,该过程假定最小重量结构中所有故障模式同时发生。考虑的失效模式类型包括屈服,挠曲屈曲,扭转挠曲屈曲和局部屈曲。破坏准则仅基于抗压强度,而忽略了其他可能的设计约束条件(例如,弯曲刚度,最小规格和成本)。检查了端部支撑条件和约束对扭转屈曲的影响。根据1998年英国标准协会的《建筑物中钢结构的结构用途》规范计算出的C型截面的承载能力用于检验理论预测的有效性。最后,根据最佳结果设计并制造了两个带唇的新C型截面,并进行了测试。测试结果证实了分析预测,最佳的C形截面的性能比现有的要好得多。

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