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首页> 外文期刊>Thin-Walled Structures >A methodology for optimally designing fibre-reinforced laminated structures with design variable tolerances for maximum buckling strength
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A methodology for optimally designing fibre-reinforced laminated structures with design variable tolerances for maximum buckling strength

机译:优化设计具有可变公差以最大屈曲强度的纤维增强层压结构的方法

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摘要

A procedure to design symmetrically laminated structures for maximum buckling load with manufacturing uncertainty in the ply angle-which is the design variable, is described. It is assumed that the probability of any tolerance value occurring within the tolerance band, compared with any other, is equal, and thus the technique is aimed at designing for the worst-case scenario. The finite element method is implemented and used to determine the fitness of each design candidate, and so the effects of bending-twisting coupling are accounted for. The methodology is flexible enough to allow any appropriate finite element formulation and search algorithm to be substituted. Three different tolerance scenarios are used for the purposes of illustrating the methodology, and plates with varying aspect and loading ratios, as well as differing boundary conditions, are chosen to demonstrate the technique, and optimally designed and compared.
机译:描述了为最大屈曲载荷设计对称层压结构的过程,其中制造不确定性为帘布层角度,这是设计变量。假定在公差带内出现任何公差值的概率与其他公差相等,因此该技术旨在针对最坏情况进行设计。实现了有限元方法,并将其用于确定每个设计候选的适合度,因此考虑了弯扭耦合的影响。该方法足够灵活,可以替换任何适当的有限元公式和搜索算法。为了说明方法学,使用了三种不同的公差方案,并选择了具有不同长宽比和加载比率以及不同边界条件的板来演示该技术,并进行了优化设计和比较。

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