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A structural-acoustic optimization of two-dimensional sandwich plates with corrugated cores

机译:具有瓦楞芯的二维夹心板的结构声学优化

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This paper presents an optimization study of sandwich plates with corrugated cores for minimizing the transmitted sound power, considering the manufacturability of the structure and constraints on the structural weight and fundamental frequency. A two-dimensional plate model is developed based on the spectral element method (SEM) for the calculation of the frequency-domain vibration response of the whole sandwich structure subject to airborne excitation, and the Rayleigh integral formula is used to calculate the transmitted sound power via its structure-born path. A genetic algorithm-based multi-parameter optimization method is employed to search for the optimal structural parameters with the objective to minimize the sound power transmitted. It is indicated that the optimization results depend highly on the properties of resonant modes in the targeted frequency band. Because of the local modes of the sandwich structure in the high frequency band, the transmitted sound power can be significantly reduced with neither increasing the structural weight nor deteriorating the bending stiffness.
机译:本文介绍了砂皮板具有瓦楞芯的夹层板,以最小化透射声功率,考虑到结构的可制造性和对结构重量和基频的约束。基于频谱元件方法(SEM)开发了一种二维板模型,用于计算经过空气传播激励的整个夹心结构的频域振动响应,瑞利积分配方用于计算传输的声音通过其结构出生的路径。采用基于遗传算法的多参数优化方法来搜索最佳结构参数,目的是最小化发送的声音。结果表明优化结果高度依赖于目标频带中的谐振模式的性质。由于在高频带中的夹层结构的局部模式,透射声功率可以随着构造重量而不是劣化弯曲刚度而显着减小。

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