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Optimum stacking sequence design of composite laminates for maximum buckling load capacity using parameter-less optimization algorithms

机译:使用无参数优化算法的最大屈曲载荷能力的复合层压板最佳堆叠顺序设计

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This paper presents a comparative study of the application of parameter-less meta-heuristic algorithms in optimum stacking sequence design of com of composite laminates for maximum buckling load capacity. Here, JAYA algorithm, along with Salp Swarm Algorithm, Colliding Bodies Optimization, Grey Wolf Optimizer, and Genetic Algorithm with standard setting and self-adaptive version are implemented to the problem of composite laminates with 64 graphite/epoxy plies with conventional ply angles, under several bi-axial cases and panel aspect ratios. Optimization objective is to maximize the buckling load of symmetric and balanced laminated plate. Statistical analysis are performed for six cases and the results are compared in terms of mean, standard deviation, the coefficient of variation, best and worst solutions, accompanied by the percentage of the. The Kruskal-Wallis nonparametric test is also utilized to make further confidence in the examinations. Numerical results show the high capability of the JAYA algorithm for maximizing the buckling capacity of composite plates.
机译:本文对无参数元启发式算法在复合材料层压板com的最佳堆叠顺序设计中的应用进行了比较研究,以实现最大屈曲载荷能力。在这里,JAYA算法与Salp Swarm算法,碰撞体优化,Gray Wolf优化器以及具有标准设置和自适应版本的遗传算法一起用于解决在常规条件下具有64层石墨/环氧树脂层的常规层角的复合层板的问题。几种双轴情况和面板纵横比。优化目标是使对称且平衡的层压板的屈曲载荷最大化。对六种情况进行了统计分析,并对结果进行了均值,标准差,变异系数,最佳和最差解以及百分数的比较。还使用Kruskal-Wallis非参数检验来增强对检验的信心。数值结果表明,JAYA算法具有最大化复合板屈曲能力的能力。

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