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Weight Optimisation Of Damage Resistant Composite Panels With A Posteriori Cost Evaluation

机译:通过后验成本评估优化抗损伤复合板的重量

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摘要

In the present paper, we attempt a novel optimisation strategy for damage resistant composite stiffened panels based on genetic algorithms and oriented towards the satisfaction of minimum weight criteria. In order to accomplish this task, first, minimum weight solutions for panel configurations with T and I stringers, satisfying the buckling resistance constraint are examined. Some minimum weight solutions are imposed to be buckling resistant only, that is, capable to sustain a given minimum admissible buckling load, while other solutions are imposed to be buckling and damage resistant, in other words, capable to sustain a given admissible buckling load being at the same time able to resist to a given impact energy without developing significant damage. Then a-posteriori evaluation of costs is performed for the best minimum weight solutions. Such an evaluation takes, at the same time, into account the manufacturing costs, which depend on the selected manufacturing process and on the geometrical configuration, and the maintenance costs which are related to impact events and consequent repairing actions. Finally, the influence of the impact damage and buckling resistance constraints on the stiffened composite panel's costs is critically discussed providing useful considerations oriented to a cost effective composites design.
机译:在本文中,我们尝试基于遗传算法并面向最小重量标准的抗损伤复合材料加劲板的新型优化策略。为了完成此任务,首先,检查满足T型和I型桁条的面板结构的最小重量解决方案,该方案满足屈曲阻力约束。某些最小重量解决方案被强制仅抗屈曲,即能够承受给定的最小容许屈曲载荷,而其他解决方案被强制具有屈曲和抗损伤性,换句话说,能够承受给定的容许屈曲载荷。同时能够抵抗给定的冲击能量而不会造成重大损坏。然后对成本进行后验评估,以获得最佳的最小重量解决方案。同时,这样的评估考虑了取决于所选择的制造过程和几何形状的制造成本以及与冲击事件和随后的修理动作有关的维护成本。最后,严格讨论了冲击损伤和抗屈曲约束对加硬复合板成本的影响,并提供了针对具有成本效益的复合材料设计的有益考虑。

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