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Distribution Optimization of Constrained Damping Materials Covering on Typical Panels Under Random Vibration

机译:在随机振动下覆盖典型面板上覆盖的约束阻尼材料的分布优化

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摘要

This paper studies topology optimization of metallic and composite panels of three different configurations (flat, three-bay and 3 x 3 grid) covered by the constrained damping materials considering first modal loss factors. The vibration experiments seek to obtain the first modal loss factor and first modal frequency for the aforementioned panels, and corresponding finite element (FE) simulations are completed using commercial software ABAQUS (R). According to simulation results, the distribution of constrained damping materials is optimized with evolutionary structural optimization (ESO) method developed using MATLAB. The results show that the first modal loss factors of optimized panels are reduced slightly if the constrained damping material is removed by 50%. Under the base excitation near each first modal frequency, the maximum root mean square of Von Mises equivalent stress (RMISES) of optimized flat panels and 3 x 3 grid stiffened panels decreases compared with panels without constrained damping materials. However, the maximum RMISES value of optimized three-bay stiffened panels nearly remains unchanged due to the configuration type of the stiffeners. These results conclude that the three-bay stiffened panel is the best to reduce the maximum RMISES value of at base structure with the same additional mass.
机译:本文研究了三种不同构型的金属和复合面板的拓扑优化(平坦,三湾和3 x 3网格),这些构型被约束的阻尼材料覆盖,考虑到第一个模态损耗因子。振动实验试图获得上述面板的第一个模态损耗因子和第一个模态频率,并使用商业软件ABAQUS(R)完成相应的有限元(FE)模拟。根据仿真结果,通过使用MATLAB开发的进化结构优化(ESO)方法,优化了约束阻尼材料的分布。结果表明,如果将约束阻尼材料除去50%,则优化面板的第一个模态损耗因子会稍微降低。在每个第一个模态频率附近的基本激发下,与没有约束阻尼材料的没有约束的材料相比,优化平板和3 x 3个网格僵硬面板的最大均方根和优化平板的等效应力(RMISE)降低。但是,由于加强剂的配置类型,优化三层式耐加工面板的最大rm值几乎保持不变。这些结果得出的结论是,三层僵硬的面板是降低基本结构的最大rmise rmise rmise thing super额外质量的最大值。

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