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Derivation and application of blending constraints in lamination parameter space for composite optimisation

机译:叠合参数空间中混合约束的推导及复合优化应用

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This article introduces a set of blending constraints expressed in lamination parameter space, applicable during the optimisation of composite structures. Unequal spatial load distributions lead to locally optimised thicknesses and ply orientations. However, ensuring structural continuity during composite tailoring is essential in order to achieve ready-to-manufacture designs. Single step stacking sequence optimisations relying on evolutionary algorithms to enforce continuity through the application of blending rules are prone to the curse of dimensionality. By contrast, multi-step optimisation including a continuous sub-step can optimise composite structures at reasonable computational costs. However, discrepancies between continuous and discrete optimisations result in performance loss during stacking sequence retrieval. This study demonstrates performance improvement during stacking sequence retrieval due to the application of the proposed continuous blending constraints. Numerical results based on the benchmark 18-panel horseshoe blending problem highlight the achievement of near-optimal easy-to-blend continuous designs in a matter of seconds. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一组在叠层参数空间中表示的混合约束,这些约束适用于复合结构的优化。不均匀的空间载荷分布会导致局部优化的厚度和层定向。但是,为了实现现成的设计,在复合剪裁过程中确保结构连续性至关重要。依靠进化算法通过应用混合规则来实现连续性的单步堆叠序列优化容易受到维度的诅咒。相反,包括连续子步骤的多步骤优化可以以合理的计算成本来优化复合结构。但是,连续和离散优化之间的差异会导致堆栈序列检索过程中的性能损失。这项研究证明了由于提出的连续混合约束的应用,在堆叠序列检索期间的性能提高。基于基准18面板马蹄铁混合问题的数值结果突出了在几秒钟内就实现了近乎最佳的易混合连续设计。 (C)2015 Elsevier Ltd.保留所有权利。

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