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Unconstrained shape optimisation of singly-symmetric and open cold-formed steel beams and beam-columns

机译:单对称和开放式冷弯型钢梁和梁柱的无约束形状优化

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This study aims to optimise the cross-sectional shape of singly-symmetric, open-section and simply supported cold-formed steel (CFS) beams and beam-columns. No manufacturing or assembly constraints are considered. The previously developed augmented Lagrangian Genetic Algorithm (GA), referred to as the "self-shape" optimisation algorithm, is used herein. Fully restrained and unrestrained beams against lateral deflection and twist, as well as unrestrained beam-columns are optimised. Various combinations of axial compressive load and bending moment are analysed for the beam-columns. The Direct Strength Method (DSM) is used to evaluate the nominal member compressive and bending capacities. The accuracy of the automated rules, developed in the literature to determine the elastic local and distortional axial budding stresses from Finite Strip signature curves, is verified herein to estimate the elastic bending buckling stresses. The optimised cross-sectional shapes are presented for all cases and the evolution of the unrestrained shapes from pure axial compression to pure bending is discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究旨在优化单对称,开放截面和简单支撑的冷弯型钢(CFS)梁和梁柱的截面形状。没有考虑制造或组装约束。本文使用了先前开发的增强拉格朗日遗传算法(GA),称为“自形”优化算法。优化了完全约束和不受约束的梁,以防止侧向偏斜和扭曲,以及不受约束的梁柱。分析了梁柱的轴向压缩载荷和弯矩的各种组合。直接强度法(DSM)用于评估名义构件的压缩和弯曲能力。本文验证了自动规则的准确性,该自动规则在文献中开发出来,可以从有限条形特征曲线确定弹性局部和变形轴向萌芽应力,以估计弹性弯曲屈曲应力。提出了针对所有情况的最佳横截面形状,并讨论了无约束形状从纯轴向压缩到纯弯曲的演变。 (C)2016 Elsevier Ltd.保留所有权利。

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