Li Junyu, Shi Yuanyuan, Jiang Renjie, Zhang Zhifu, Huang Qibai
State Key Laboratory of Digital Manufacturing Equipment and Technology, School of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.
Hubei Institute of Specialty Vehicle, Suizhou 441300, China.
Materials (Basel). 2022 Feb 18;15(4):1556. doi: 10.3390/ma15041556.
Membrane-type acoustic metamaterials (MAMs) have recently received widespread attention due to their good low-frequency sound-transmission-loss (STL) performance. A fast prediction method for the STL of rectangular membranes loaded with masses of arbitrary shapes and surface density values is proposed as a semi-analytical model for calculating the STL of membrane-type acoustic metamaterials. Through conformal mapping theory, the mass blocks of arbitrary shapes were transformed into regular shapes, which simplified the calculation model of acoustic propagation loss prediction, and the prediction results were verified by finite element simulations. The results show that the change in mass surface density was closely related to the size and frequency distribution of STL. The influence of the mass center on the STL and characteristic frequency of the film metamaterial is discussed.
膜型声学超材料(MAMs)因其良好的低频传声损失(STL)性能,近年来受到广泛关注。本文提出了一种针对加载任意形状和表面密度值质量块的矩形膜STL的快速预测方法,作为计算膜型声学超材料STL的半解析模型。通过共形映射理论,将任意形状的质量块转化为规则形状,简化了声传播损失预测的计算模型,并通过有限元模拟验证了预测结果。结果表明,质量表面密度的变化与STL的大小和频率分布密切相关。讨论了质心对薄膜超材料STL和特征频率的影响。