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Shape optimisation of manufacturable and usable cold-formed steel singly-symmetric and open columns

机译:可制造和使用的冷弯型钢单对称和开放式圆柱的形状优化

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This paper aims at incorporating manufacturing and assembly features into a shape optimisation algorithm for cold-formed steel (CFS) profiles. Genetic algorithm (GA) is used as the search algorithm and is combined with the augmented Lagrangian constraint-handling method to avoid ill-conditioning. Manufacturable cross-sections are arbitrarily drawn in the initial generation and subsequently treated as an integral part of the GA. The assembly features considered in the study reflect the ones commonly encountered in the construction industry. They include fastening elements (horizontal flange and vertical web) and allowances for utilities, and are treated as constraints. The algorithm is applied to simply-supported singly-symmetric, free-to-warp open section columns with various numbers of manufacturing bends. Three assembly cases for half sections are investigated: (a) a horizontal flange, (b) a horizontal flange and a vertical web, and (c) a horizontal flange and a vertical web with a utility clearance. A two-step optimisation process is used to optimise the columns: (i) the optimum positions of the fastening elements (horizontal flange and vertical web) are determined first and (ii) the cross-sectional shapes are then optimised. The optimised columns are discussed and compared to the unconstrained optimised columns and the conventional lipped Cee-sections. The results demonstrate the robustness and efficiency of the algorithm.
机译:本文旨在将制造和装配特征纳入冷弯型钢(CFS)型材的形状优化算法中。遗传算法(GA)用作搜索算法,并与增强的Lagrangian约束处理方法结合使用,以避免不良情况。可制造的横截面是在第一代中任意绘制的,随后被视为GA的组成部分。研究中考虑的装配特征反映了建筑行业中常见的装配特征。它们包括紧固元件(水平法兰和垂直腹板)和公用事业的余量,并被视为限制条件。该算法适用于具有各种制造弯折数的简单支撑的单对称,免翘曲的开放截面柱。研究了半截面的三种组装情况:(a)水平法兰,(b)水平法兰和垂直腹板,以及(c)水平法兰和垂直腹板,且具有有效间隙。使用两步优化过程来优化柱子:(i)首先确定紧固元件(水平法兰和垂直腹板)的最佳位置,然后(ii)然后优化横截面形状。对优化柱进行了讨论,并将其与无约束优化柱和常规唇形Cee截面进行了比较。结果证明了该算法的鲁棒性和有效性。

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