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Design of Optimal Hygrothermally Stable Laminates with Bending-Twist Coupling by Ant Colony Optimization

机译:蚁群优化设计弯扭耦合优化湿热稳定层合板

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The necessary and sufficient conditions for hygrothermal curvature stability of laminated composite plates have been derived in a prior publication and shown to be material independent. From within these conditions, various couplings are being investigated to determine any improvements over previously known optima. Bending-twist coupling has been investigated in previous work based upon a Sequential Quadratic Programming method to demonstrate the achievable level of coupling under the hygrothermal stability conditions. In this work, the Ant Colony Optimization is adopted as an alternative approach to reach global optima. Comparisons of resulting stacking sequences and associated level of coupling are provided. Results for laminates consisting of two through ten plies made of graphite/epoxy material are presented. The results suggest that the solution to the bending-twist coupling problem consist of multiple global optima. ACO was able to provide new global optimal solutions for laminates consisting of 8-10 plies.
机译:层压复合板的湿热曲率稳定性的必要和充分条件已经在先前的出版物中得出,并且显示为与材料无关。在这些条件下,正在研究各种联轴器,以确定对先前已知的最佳方法的任何改进。在先前的工作中,基于顺序二次规划方法研究了弯扭耦合,以证明在湿热稳定条件下可达到的耦合水平。在这项工作中,采用蚁群优化法作为实现全局最优的替代方法。提供了所得堆叠顺序和相关联的偶联水平的比较。给出了由两层到十层由石墨/环氧树脂材料制成的层压板的结果。结果表明,弯扭耦合问题的解决方案包括多个全局最优解。 ACO能够为由8到10层组成的层压板提供全球最佳的新解决方案。

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