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Topological optimization design on constrained layer damping treatment for vibration suppression of aircraft panel via improved Evolutionary Structural Optimization

机译:通过改进的进化结构优化对飞机板振动抑制的约束层阻尼处理的拓扑优化设计

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Light-weight panel structures are commonly used in inlets of the Auxiliary Power Unit (APU) of aircraft. In this paper, a study on topological optimization design of constrained layer damping (CLD) treatment for vibration suppression of aircraft panel based on improved Evolutionary Structural Optimization (ESO) is presented. In the analysis, the volume fraction of CLD material is selected as the constraint condition, and the maximization of modal loss factor is considered as the objective function to enhance damping in the topology optimization model of the structure with CLD treatment, Modal Strain Energy (MSE) method is adopted to deduce the sensitivity of the objective function to design variables, using mesh independent filter method to solve the checkerboard pattern and the mesh-dependent problem, the ESO with improved evolutionary rate is proposed to search the optimal layout of CLD material, and the correctness and effectiveness of the optimization results are demonstrated through the numerical examples. Compared with conventional ESO, the improved ESO can not only increase the calculation efficiency but also obtain a more reasonable optimized topology geometry. The vibration suppression of the optimized panel is compared with those of the original panel, stiffened panel, and full cover CLD material damping panel and verified by experiments. The results show that the optimized damping panel has a better vibration reduction effect. (C) 2021 Elsevier Masson SAS. All rights reserved.
机译:重量轻的面板结构在飞行器的辅助动力装置(APU)的入口常用。在本文中,上约束层阻尼(CLD)治疗基于改进渐进结构优化振动抑制飞机面板中的拓扑优化设计一项研究(ESO)被呈现。在分析中,CLD材料的体积分数被选择作为约束条件,和模态损耗因子最大化被认为是目标函数,以增强在与CLD治疗结构的拓扑优化模型阻尼,模态应变能(MSE )方法采用对目标函数的灵敏度推断到设计变量,使用网眼独立过滤器的方法来解决,具有改进的进化速率的ESO建议搜索CLD材料的最佳布局的棋盘图案和网状依赖性问题,和优化结果的正确性和有效性是通过数值例子证明。与传统的ESO相比,改进ESO不仅可以提高计算效率,而且获得更合理的优化拓扑几何形状。优化的面板的振动抑制与那些原来的面板,加筋板的比较,并且全面罩CLD材料减震板和通过实验验证。结果表明,优化减震板具有更好的减振效果。 (c)2021 Elsevier Masson SAS。版权所有。

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