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Multiconstrained optimization of laminated and sandwich plates using evolutionary algorithms and higher-order plate theories

机译:多层板和夹心板的多约束优化使用进化算法和高阶板理论

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摘要

The optimization of laminated and sandwich plates with respect to buckling load and thickness has been performed, using different sets of constraints such as the fundamental frequency, the maximum deflection under transverse uniform distributed load, the mass and the buckling load. Two different evolutionary algorithms have been employed (genetic algorithm and simulated annealing (SA)) together with two plate models (classical plate theory and cubic zig-zag model). The performed analyses show that the two evolutionary algorithms provide almost the same results though the SA procedure is less time consuming; furthermore, results of the two displacement theories are the closer to each other the higher the side-to-thickness ratio is.
机译:已使用不同的约束集,例如基频,横向均匀分布载荷下的最大挠度,质量和屈曲载荷,对层压板和夹心板的屈曲载荷和厚度进行了优化。已经采用了两种不同的进化算法(遗传算法和模拟退火(SA))以及两个板模型(经典板理论和三次之字形模型)。进行的分析表明,尽管SA程序耗时少,但这两种进化算法提供的结果几乎相同。此外,两个位移理论的结果彼此之间的距离越近,则厚度比越高。

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