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A novel technique for the design of hybrid composite laminates based on dynamic programming and dynamic tree trimming

机译:一种基于动态规划和动态树修边设计混合复合层压板的新技术

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摘要

This paper proposes a novel technique for the design of hybrid composite laminates. The method explores design space with several implicit decision trees in order to obtain the Pareto front, applying a number of manufacturing and structural considerations. The research is carried out using a parallelized breadth first search algorithm aided by dynamic programming and dynamic tree trimming; as a consequence the searching process is significantly accelerated. This novel procedure is applied to a well-known design case, where it identifies the best carbon-epoxy and glass-epoxy laminate combinations in terms of weight versus cost, and finds the Pareto front with less computational effort than alternative methods used in the past to solve the same problem. Since a full set of feasible solutions is produced with this new methodology, some important conclusions are obtained regarding hybrid laminate design criteria.
机译:本文提出了一种用于设计杂化复合材料层压材料的新技术。 该方法探讨了具有若干隐式决策树的设计空间,以便获得帕累托前线,应用许多制造和结构考虑。 通过动态编程和动态树修整,使用并行化广度第一搜索算法进行研究; 结果,搜索过程得到了显着加速。 该新方法应用于众所周知的设计案例,在那里它在重量与成本方面鉴定了最佳的碳环氧和玻璃环氧树脂层压体组合,并以比过去使用的替代方法更少的计算工作找到帕累托前线 解决同样的问题。 由于采用这种新方法生产了全套可行的解决方案,因此有关于混合层压板设计标准的一些重要结论。

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