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Optimal design of fibre-reinforced laminated plates accounting for manufacturing uncertainty

机译:考虑到制造不确定性的纤维增强层压板的优化设计

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摘要

A procedure to design symmetrically laminated plates under buckling loads for minimum weight with manufacturing uncertainty (tolerance) in the ply angle and plate thickness, which are the design variables, is described. A minimum buckling load capacity is the design constraint implemented. It is assumed that the probability of any tolerance value occurring within the tolerance band, compared with any other, is equal, and thus the approach is a worst case scenario approach. The effects of bending-twisting coupling are neglected in implementing the procedure, and the Downhill Simplex method is used as the search technique, but the methodology is flexible and allows any appropriate problem formulation and search algorithm to be substituted. Two different tolerance scenarios are used for the purposes of illustrating the methodology, and plates with varying aspect ratios and loading ratios are optimally designed and compared. The results demonstrate the importance of carrying out design optimisation of composite structures with the effects of manufacturing tolerances included.
机译:描述了在屈曲载荷下设计对称层压板的过程,以使重量最小,同时在设计角度(层数)和板厚度中存在制造不确定性(公差)。最小屈曲载荷能力是所实施的设计约束。假设在公差带内出现任何公差值的概率与其他公差相等,因此该方法是最坏情况方案。在执行该过程时忽略了弯扭耦合的影响,并使用Downhill Simplex方法作为搜索技术,但是该方法很灵活,可以替换任何合适的问题公式和搜索算法。为了说明方法论,使用了两种不同的公差方案,并优化设计和比较了具有不同长宽比和负载比的印版。结果证明了在考虑制造公差的情况下对复合结构进行设计优化的重要性。

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