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首页> 外文期刊>Journal of Reinforced Plastics and Composites >Optimization of composite ring stiffened cylindrical hulls for unmanned underwater vehicles using multi-island genetic algorithm
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Optimization of composite ring stiffened cylindrical hulls for unmanned underwater vehicles using multi-island genetic algorithm

机译:多岛遗传算法无人水下车辆复合环加筋圆柱壳的优化

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摘要

The usage of composite material helps reducing structure's weight in many conditions. In this paper, The Composite Ring Stiffened Cylindrical Hulls used by Unmanned Underwater Vehicles is optimized in various depths. The optimization aims to reducing the weight of the composite ring stiffened cylindrical hulls. Two candidate composite materials, T700/Epoxy and B(4)5505/Epoxy, are chosen to form the outer shell and stiffeners. Number and shape of the stiffeners, ply angles, and the number of the plies are considered. The Multi-Island Genetic Algorithm (MIGA) is performed in MATLAB and a new two-step method is proposed in crossover operations. ANSYS parametric design language is integrated in optimization procedure to ensure the acceptance of the optimal result. The results reveal that the proposed two-step method for multi-island genetic algorithm is efficiency and robust in reducing the weight of the composite ring stiffened cylindrical hulls. The weight for optimized composite ring stiffened cylindrical hulls with T700/Epoxy shells and B(4)5505/Epoxy stiffeners is 10.5% lighter than that with single composite material when the operating depth is 200 m.
机译:复合材料的使用有助于降低结构的重量在许多条件下。本文在各种深度优化了无人水下车辆使用的复合环加强圆柱。优化旨在减小复合环加强圆柱壳的重量。选择两个候选复合材料,T700 /环氧和B(4)5505 /环氧树,形成外壳和加强件。考虑加强件,帘布层的数量和形状和层数。多岛遗传算法(MIGA)在MATLAB中执行,并在交叉操作中提出了一种新的两步方法。 ANSYS参数化设计语言集成在优化过程中,以确保接受最佳结果。结果表明,提出的多岛遗传算法的两步方法是减少复合环加强圆柱壳的重量的效率和稳健。用T700 /环氧壳和B(4)5505 /环氧加强件的优化复合环加强圆柱壳的重量比在操作深度为200米的情况下比单个复合材料轻。

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