首页> 外文期刊>Composites: mechanics, computations, applications >MULTIOBJECTIVE OPTIMIZATION FOR UNIDIRECTIONAL GLASS AND CARBON FIBER-REINFORCED HYBRID EPOXY COMPOSITES UNDER FLEXURAL LOADING
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MULTIOBJECTIVE OPTIMIZATION FOR UNIDIRECTIONAL GLASS AND CARBON FIBER-REINFORCED HYBRID EPOXY COMPOSITES UNDER FLEXURAL LOADING

机译:弯曲荷载下单向玻璃和碳纤维增强杂交环氧复合材料的多目标优化

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摘要

A multiobjective optimization study for unidirectional carbon fiber- and glass fiber-reinforced epoxy hybrid composites under flexural loading is presented in this paper. The flexural strength of the hybrid composite was conveniently expressed by regression formulas. Two optimization methods—WSM and NSGA-II—were employed for multiobjective optimization with the cost and weight being the objective functions. When WSM was used, two algorithms, viz., interior point algorithm (IPA) and genetic algorithm (GA), were used. The results suggest that positive hybrid effects can be utilized to improve the flexural strength.
机译:本文介绍了弯曲荷载下单向碳纤维和玻璃纤维增​​强环氧混合复合材料的多目标优化研究。杂化复合物的抗弯强度通过回归式方式方便地表达。两种优化方法-WSM和NSGA-II - 用于多目标优化,其成本和重量是目标功能。使用WSM时,使用两种算法,VIZ,内部点算法(IPA)和遗传算法(GA)。结果表明,阳性混合效应可用于提高抗弯强度。

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