基于超材料结构的悬臂梁水听器设计
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常文娟(1983-),女,山东省荣成人,高级工程师,硕士,主要从事声学传感器的设计,水声通信与探测的研究。

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Design of Cantilever Beam Hydrophone Based on Metamaterials Structure
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    摘要:

    悬臂梁水听器可在谐振频段接收低频水声信号,相比传统水听器,其不仅能提升灵敏度,还可获得更优越的探测性能,在海洋工程领域具有广阔的应用前景。该文基于声学超材料设计了一种新的悬臂梁水听器,研究了声学超材料的负等效原理及材料参数对谐振频率的影响,获得了降低悬臂梁水听器谐振频率的方法。在此基础上分析了单纯铜梁、三层铜-橡胶梁、五层铜-橡胶梁的一阶固有频率,并结合实际使用需求选用三层复合结构完成超材料悬臂梁水听器的设计。仿真分析结果表明,在相同尺寸情况下,该文设计的水听器比传统悬臂梁水听器具有更低的谐振频率。

    Abstract:

    The cantilever beam hydrophone can receive low frequency underwater acoustic signals in resonant frequency band, which can not only improve the sensitivity but also obtain superior detection performance compared with the traditional hydrophones, and has a broad application prospect in the field of marine engineering. This article designs a novel cantilever beam hydrophone based on acoustic metamaterials. First, the negative equivalent principle of the metamaterials and the effects of material parameters on resonant frequency are studied, and the method of reducing the resonant frequency of the cantilever beam hydrophone is obtained. On this basis, the first-order natural frequencies of single copper beam, three-layer copper-rubber beam and five-layer copper-rubber beam are analyzed, and the three-layer composite structure is selected to complete the design of the metamaterial cantilever beam hydrophone according to the practical requirements. The simulation analysis results show that the hydrophone designed in this paper has a lower resonant frequency than the conventional cantilever beam hydrophone with the same dimensions.

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常文娟,赵永成,廖力鸣,闫晟,郝程鹏.基于超材料结构的悬臂梁水听器设计[J].压电与声光,2022,44(3):339-343. CHANG Wenjuan, ZHAO Yongcheng, LIAO Liming, YAN Sheng, HAO Chengpeng. Design of Cantilever Beam Hydrophone Based on Metamaterials Structure[J]. PIEZOELECTRICS AND ACOUSTOOPTICS

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  • 在线发布日期: 2021-11-23
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