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Optimum design of composite structures with ply drop-offs using response surface methodology

机译:使用响应表面方法的层下降复合结构的优化设计

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PurposeMany studies only take into account the ply stacking sequence as the design variable to determine the optimal ply drop-off location; however, it is necessary to optimize other parameters that have a direct influence on the ply drop-off site such as which plies should be dropped and in which longitudinal direction. That way, the purpose of this study is to find the most significant design variables relative to the drop-off location considering the transversal and longitudinal positions, seeking to achieve the optimal combination of ply drop-off locations that provides excellent performance for the laminate plate.Design/methodology/approachThis study aims to determine the optimal drop-off location in a laminate plate using the finite element method and an approach statistical with design of experiments (DOE).FindingsThe optimization strategy using DOE revealed to be satisfactory for analyzing laminate structures with ply drop-offs, demonstrating that not all design factors influence the response variability. The failure criterion response variable revealed a poor fit, with an adjusted coefficient of determination lower than 60%, thus demonstrating that the response did not vary with the ply drop-off location. Already the strain and natural frequency response variables presented high significance. Finally, the optimization strategy revealed that the optimal drop-off location that minimizes the strain and maximizes the natural frequency is the ply drop-off located of the end plate.Originality/valueIt was also noted that many researchers prefer evolutionary algorithms for optimizing composite structures with ply drop-offs, being scarce to the literature studies involving optimization strategies using response surface methodology. In addition, many studies only take into account the ply stacking sequence as the design variable to determine the optimal ply drop-off location; however, in this study, the authors investigated other important parameters that have direct influence on the ply drop-off site such as which plies should be dropped and in which longitudinal direction.
机译:Purposemany的研究仅考虑到PLY堆叠序列作为设计变量,以确定最佳的帘布层下降位置;然而,有必要优化对帘布层下降部位具有直接影响的其他参数,例如应该掉地掉纵向的帘布层。这样,本研究的目的是找到相对于考虑横向和纵向位置的下降位置的最重要的设计变量,寻求实现为层压板提供优异的性能的层次下降位置的最佳组合。设计/方法/方法/方法旨在使用有限元方法确定层压板中的最佳下降位置和实验设计的方法(DOE)。使用DOE的优化策略显示用于分析层压结构的令人满意随着层面的下降,表明并非所有的设计因素都会影响响应变异性。故障标准响应变量显示出较差的拟合,测定系数低于60%,从而证明响应不会随着帘布层下降位置而变化。在应变和自然频率响应变量已经提高了高意义。最后,优化策略揭示了最小化应变的最佳下降位置,最大化自然频率是位于端板上的层下降。还注意到许多研究人员更喜欢用于优化复合结构的进化算法随着Ply Dischs,缺乏涉及使用响应表面方法的优化策略的文献研究。此外,许多研究仅考虑到帘布层堆叠序列作为设计变量,以确定最佳的帘布层下降位置;然而,在这项研究中,作者研究了对Ply下降部位有直接影响的其他重要参数,例如应该掉阳性的帘布层和纵向。

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