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Two-level optimization for a new family of cold-formed steel lipped channel sections against local and distortional buckling

机译:针对新系列的冷弯钢唇形通道截面的两级优化,以防止局部屈曲和变形屈曲

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The objective of this paper is to provide the development of a new algorithm that produces a family of minimal weight cold-formed steel lipped channels with the smallest number of individual cross-sections (family size) that are still capable of covering the current engineering design demands as commonly found in light steel framing. Current research in cold-formed steel optimization has largely sought optimal cross-sections for single members under a single applied action. In this paper, the optimization effort is extended to a broad set of axial (P) and bending (M) demands. A two-level optimization framework is proposed: level one focuses on member optimization of the P-M demand space as derived from current commercially available lipped channel sections in the United States; while level two focuses on the selection of a new family of optimal lipped channel sections that have the same efficiency in covering the design space, but utilize a minimal family size. As the focus of the effort is on the two-level optimization the cross-section optimization is simplified in this case to lipped channels against local and distortional buckling only; however the adopted algorithms are readily extensible. The results show that a new family of shapes with only 12 sections can achieve the same or better performance as the 108 sections commercially available in the United States. The developed family of shapes provides a direct demonstration of the potential for optimization to improve cold-formed steel manufacturing. In the future, the first-level member optimization will include new cross-section shapes, e.g., sigma sections, as well as global buckling, and will be performed along with the second family-level optimization to demonstrate additional potential benefits. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文的目的是提供一种新算法的开发,该算法可生成一系列最小重量的冷弯钢唇形通道,这些通道具有最小的单个横截面(系列尺寸),并且仍然能够覆盖当前的工程设计轻钢框架中常见的要求。当前在冷弯钢优化中的研究主要是在单个作用下寻求单个构件的最佳横截面。在本文中,优化工作扩展到广泛的轴向(P)和弯曲(M)要求。提出了一个两级优化框架:第一级专注于对P-M需求空间的成员优化,该优化是从美国当前可购买到的唇形通道部分得出的;而第二级重点是选择新的最佳唇形通道系列产品,这些产品在覆盖设计空间方面具有相同的效率,但使用的产品系列尺寸最小。由于工作重点放在两级优化上,因此在这种情况下,将横截面优化简化为仅对局部屈曲和变形屈曲的有唇通道。但是,采用的算法很容易扩展。结果表明,只有12个截面的新形状系列可以达到与美国108个截面相同或更好的性能。先进的形状系列直接展示了优化潜力,以改善冷弯型钢的制造。将来,第一级成员优化将包括新的横截面形状(例如sigma截面)以及整体屈曲,并将与第二族级优化一起执行以展示其他潜在的好处。 (C)2016 Elsevier Ltd.保留所有权利。

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