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Optimization of thickness and delamination growth in composite laminates under multi-axial fatigue loading using NSGA-II

机译:使用NSGA-II优化复合材料层合板在多轴疲劳载荷下的厚度和分层生长

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摘要

Employing NSGA-II, this paper aims to achieve a damage tolerant structure enjoying maximum delamination resistance and thinness; therefore, we simultaneously define minimization of laminate thickness and delamination growth as objective functions. Fiber orientation angle, ply thickness, and stacking sequence are chosen as design variables. The authors consider symmetric glass/epoxy laminates with middle layers containing a single matrix crack.By applying multi-axial fatigue loading, the initiation and growth of local delamination from the tip of the matrix crack in the damaged ply interface became possible. Finally, it is indicated that NSGA-II has good convergence with damage optimization in cracked glass/epoxy composite laminates.
机译:本文采用NSGA-II,旨在实现具有最大抗分层性和薄度的耐损伤结构。因此,我们同时将最小的层压板厚度和分层增长定义为目标函数。选择纤维取向角,层厚度和堆叠顺序作为设计变量。作者考虑了中间层包含单个基体裂纹的对称玻璃/环氧树脂层压板。通过施加多轴疲劳载荷,可以在受损的层板界面中从基体裂纹的尖端引发和增长局部分层。最后,表明NSGA-II具有良好的收敛性,并且在破裂的玻璃/环氧树脂复合层压板中具有损伤优化。

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