新型螺旋吸声和绝缘超材料的声学性能研究

Song Liu, Pan-pan Liu, Ren-jie Zhao, Jian-hua Lu, Kang Yang, Huayu Zhou, Yi-fan Du
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引用次数: 0

摘要

中低频段声波在传播过程中具有很强的穿透力和衍射能力,因此难以衰减。如何控制中低频宽带声波已成为一个具有挑战性的课题。因此,有必要开发具有中低频吸声、隔声和降噪功能的新型材料或结构。声学超材料的特殊性能为吸声和隔声的发展提供了新思路。为了有效控制低频段的噪声,我们设计了一种新型空间螺旋声学超材料。首先,分析了新型空间螺旋声超材料带隙特性的机理。然后,通过有限元软件 COMSOL Multiphysics 完成了新型空间螺旋声学超材料在 100-2500 Hz 频段的吸声和隔声性能的计算和分析。借助三维打印技术,完成了超材料的制备,并对螺旋声超材料的吸声和隔声性能进行了对比实验研究,验证了计算方法的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on acoustic performance of new spiral sound absorbing and insulating metamaterial
Middle and low frequency band sound waves have strong penetration and diffraction abilities during the propagation process, making it difficult to attenuate. The control of middle and low frequency broadband sound waves has become a challenging topic. Therefore, it is necessary to develop new materials or structures with middle and low frequency sound absorption, insulation, and noise reduction functions. The special properties of acoustic metamaterial provide new ideas for the development of sound absorption and insulation. In order to effectively control the noise in the lower frequency band, a new spatial spiral acoustic metamaterial was designed. First, the mechanism of band gap characteristics of a new spatial spiral acoustic metamaterial is analyzed. Then, a new spatial spiral acoustic metamaterial is completed through the finite element software COMSOL Multiphysics and the calculation and analysis of sound absorption and insulation performance in the 100–2500 Hz frequency band are completed. With the help of 3D printing, the preparation of metamaterial is completed, and the comparative experimental study of sound absorption and insulation performance of spiral acoustic metamaterial is carried out to verify the accuracy of the calculation method.
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