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Optimization of Blade Stiffened Composite Panel under Buckling and Strength Constraints

机译:屈曲和强度约束下叶片加筋复合板的优化

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References(19) Cited-By(2) This paper deals with multiple constraints for dimension and stacking-sequence optimization of a blade-stiffened composite panel. In a previous study, a multiple objective genetic algorithm using a Kriging response surface with a buckling load constraint was the target. The present study focuses on dimension and stacking-sequence optimization with both a buckling load constraint and a fracture constraint. Multiple constraints complicate the process of selecting sampling analyses to improve the Kriging response surface. The proposed method resolves this problem using the most-critical-constraint approach. The new approach is applied to a blade stiffened composite panel and the approach is shown to be efficient.
机译:参考文献(19)Cited-By(2)本文讨论了叶片加筋复合板尺寸和堆叠顺序优化的多重约束。在先前的研究中,使用具有屈曲载荷约束的Kriging响应面的多目标遗传算法是目标。目前的研究集中在具有屈曲载荷约束和断裂约束的尺寸和堆垛顺序优化上。多重约束使选择采样分析的过程变得复杂,以改善克里格响应面。所提出的方法使用最关键约束方法解决了这个问题。将该新方法应用于叶片加硬的复合面板,并且该方法被证明是有效的。

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