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首页> 外文期刊>Latin American Journal of Solids and Structures >Mass and buckling criterion optimization of stiffened carbon/epoxy composite cylinder under external hydrostatic pressure
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Mass and buckling criterion optimization of stiffened carbon/epoxy composite cylinder under external hydrostatic pressure

机译:外部静水压力下加硬碳/环氧复合材料圆柱体的质量和屈曲准则优化

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In this manuscript, stiffened carbon / epoxy composite cylinders under external hydrostatic pressure will be examined to minimize mass and maximize buckling pressure. The new approach proposed in this paper is single objective optimization of stiffened composite cylindrical shell under external pressure by genetic algorithm (GA) in order to obtain the reduction of mass and cost, and increasing the buckling pressure. The objective function of buckling has been used by performing the analytical energy equations and Tsai-Wu and Hashin failure criteria have been considered. Single objective optimization was performed by improving the evolutionary GA. Optimization have been done to achieve the minimum weight with failure and buckling constraints. Finally, optimal angles pattern of layers and fiber orientations are provided for cylinder under external hydrostatic pressure.
机译:在此手稿中,将检查在外部静水压力下的加硬碳/环氧复合材料气瓶,以最大程度地减小质量并最大化屈曲压力。本文提出的新方法是采用遗传算法(GA)对外加压力的加筋复合材料圆柱壳进行单目标优化,以实现质量和成本的降低,并提高屈曲压力。屈曲的目标函数已通过执行分析能量方程式使用,并考虑了Tsai-Wu和Hashin破坏准则。通过改善进化遗传算法来执行单目标优化。已经进行了优化以实现具有故障和屈曲约束的最小重量。最后,为圆柱体在外部静水压力下提供了最佳的层角度图案和纤维取向。

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