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Topology Optimization for Minimizing the Resonant Response of Plates with Constrained Layer Damping Treatment

机译:通过约束层阻尼处理使板的共振响应最小的拓扑优化

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A topology optimization method is proposed to minimize the resonant response of plates with constrained layer damping (CLD) treatment under specified broadband harmonic excitations. The topology optimization problem is formulated and the square of displacement resonant response in frequency domain at the specified point is considered as the objective function. Two sensitivity analysis methods are investigated and discussed. The derivative of modal damp ratio is not considered in the conventional sensitivity analysis method. An improved sensitivity analysis method considering the derivative of modal damp ratio is developed to improve the computational accuracy of the sensitivity. The evolutionary structural optimization (ESO) method is used to search the optimal layout of CLD material on plates. Numerical examples and experimental results show that the optimal layout of CLD treatment on the plate from the proposed topology optimization using the conventional sensitivity analysis or the improved sensitivity analysis can reduce the displacement resonant response. However, the optimization method using the improved sensitivity analysis can produce a higher modal damping ratio than that using the conventional sensitivity analysis and develop a smaller displacement resonant response.
机译:提出了一种拓扑优化方法,以在规定的宽带谐波激励下,采用约束层阻尼(CLD)处理来最小化板的共振响应。提出了拓扑优化问题,并将在指定点的频域位移共振响应的平方作为目标函数。研究和讨论了两种灵敏度分析方法。传统的灵敏度分析方法没有考虑模态阻尼比的导数。提出了一种考虑模态阻尼比导数的改进的灵敏度分析方法,以提高灵敏度的计算精度。演化结构优化(ESO)方法用于搜索CLD材料在板上的最佳布局。数值算例和实验结果表明,采用常规灵敏度分析或改进的灵敏度分析方法,通过提出的拓扑优化方法,在板上进行CLD处理的最佳布局可以减少位移共振响应。但是,使用改进的灵敏度分析的优化方法可以比使用常规灵敏度分析的方法产生更高的模态阻尼比,并且可以产生较小的位移共振响应。

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