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首页> 外文期刊>Journal of Composite Materials >Optimal design of composite stiffened panel with cohesive elements using micro-genetic algorithm
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Optimal design of composite stiffened panel with cohesive elements using micro-genetic algorithm

机译:用微观遗传算法优化设计含黏性元件的复合加筋板。

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摘要

A postbuckling analysis for composite stiffened structures is a representative nonlinear analysis, but is difficult to obtain analysis results and a lengthy computational time is required. In this study, an accurate and realistic postbuckling model for a stiffened composite panel is made, and optimization module is studied. In order to predict the realistic behavior in the postbuckling region, cohesive elements were introduced to the analysis model to account for skin-stiffener debonding. The global behaviors and failure loads of the analysis results were found to be similar to the experimental results. Based on this analysis model, the optimal layer design of a composite stiffened panel up to postbuckling failure was performed using micro genetic algorithm. The optimized result showed a higher maximum failure load in the postbuckling region.
机译:复合材料加劲结构的屈曲后分析是一种代表性的非线性分析,但难以获得分析结果,并且需要较长的计算时间。在这项研究中,建立了一个精确,现实的加筋复合板屈曲模型,并研究了优化模块。为了预测屈曲后区域的实际行为,将粘性元素引入分析模型以说明蒙皮-增粘剂的剥离。分析结果的整体行为和破坏负荷与实验结果相似。在此分析模型的基础上,采用微遗传算法进行了直至屈曲后破坏的复合材料加筋板的最优层设计。优化结果表明,在后屈曲区域具有更高的最大失效载荷。

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