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Two-level layup optimization of composite laminate using lamination parameters

机译:使用层合参数的复合材料层合板两层优化

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摘要

This paper provides an efficient method for performing global layup optimization of composite laminates with buckling and manufacturing constraints. The optimization problem is divided into two stages and is based on the use of lamination parameters. During the first stage, exact finite strip analysis and continuous optimum design are employed for buckling optimization of the lamination parameters and laminate thickness. In the second stage, a logic-based procedure combining the branch and bound method with a global layerwise technique is employed to find the optimal stacking sequences to match the optimized lamination parameters obtained in the first stage. In order to ensure the optimized layup can be used in practice, four manufacturing constraints are added into the logical search process, and the feasible region for the lamination parameters with a manufacturing constraint which requires at least 10% of each of four possible ply orientations is studied. By comparing the logic-based method with the use of a genetic algorithm for searching stacking sequences under different requirements, the high efficiency and ability to achieve a global optimal result of the logic-based method are demonstrated.
机译:本文提供了一种有效的方法来执行具有屈曲和制造约束的复合材料层压板的整体铺层优化。优化问题分为两个阶段,并基于层压参数的使用。在第一阶段,采用精确的有限条分析和连续的最佳设计来优化层压参数和层压板的厚度。在第二阶段,采用将分支定界方法与全局分层技术相结合的基于逻辑的过程来找到最佳堆叠顺序,以匹配在第一阶段中获得的优化层压参数。为了确保在实践中可以使用优化的铺层,将四个制造约束条件添加到逻辑搜索过程中,并且具有制造约束条件的层压参数的可行区域至少需要四个层定向中的每个方向的10%研究。通过比较基于逻辑的方法和使用遗传算法搜索不同要求下的堆叠序列,证明了基于逻辑的方法的高效率和获得全局最优结果的能力。

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