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Shape optimisation of cold-formed steel profiles with manufacturing constraints – Part II: Applications

机译:受制造限制的冷弯型钢的形状优化–第二部分:应用

摘要

This paper uses the Genetic Algorithm (GA)-based optimisation method for coldformed steel (CFS) profiles with manufacturing constraints, developed in the companion paper, to shape-optimise simply-supported and singly-symmetric open-section columns. Having a uniform wall thickness of 0.047 inch (1.2 mm), the columns are subjected to a compressive axial load of 16,860 lbf (75kN) and optimised for yielding and global buckling. Column lengths ranging from 3.28 ft (1,000 mm) to 9.84 ft (3,000 mm) are investigated. The algorithm is run with and without considering the manufacturing constraints. Differences between the two types of cross-sections, i.e. manufacturable and non-manufacturable, are evaluated. The influence of the number of manufacturable flat segments on the optimised cross-sectional area is also investigated. Future developments of the method for strength optimisation under combined actions and practical applications are discussed.
机译:本文使用伴随文件中开发的基于遗传算法(GA)的具有制造约束条件的冷弯型钢(CFS)型材的优化方法,对简单支撑和单对称开口截面的立柱进行形状优化。圆柱体的壁厚均匀为0.047英寸(1.2毫米),承受的轴向压缩载荷为16,860 lbf(75kN),并针对屈服和整体屈曲进行了优化。研究了从3.28英尺(1,000毫米)到9.84英尺(3,000毫米)的色谱柱长度。该算法在不考虑制造约束的情况下运行。评估了两种类型的横截面之间的差异,即可制造的和不可制造的。还研究了可制造扁平段的数量对优化横截面面积的影响。讨论了在组合作用和实际应用下强度优化方法的未来发展。

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