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3D printed small-scale acoustic metamaterials based on Helmholtz resonators with tuned overtones

机译:基于Helmholtz谐振器的3D打印小规模声学超材料,具有泛音

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摘要

Acoustic metamaterials have been extensively studied in recent decades due to their ability to control acoustic waves. In this paper, we present a prototype of a small-scale acoustic metamaterial based on Helmholtz resonators fabricated with additive manufacturing technology. The results confirm that 3D printed small-scale metamaterials can break the mass law by creating band gaps where the sound is deeply attenuated. We have also introduced a modification of the resonators whereby overtones are exploited and tuned in order to broaden the band gap. The output of this research could be used to provide passive filtering for transducers, to improve noise cancelling headphones, as well as in other smart acoustic sensors and IoT audio applications.
机译:声超材料由于其控制声波的能力而在近几十年来得到了广泛的研究。在本文中,我们提出了一种基于亥姆霍兹共鸣器的小型声超材料原型,该材料采用增材制造技术制造。结果证实,3D打印的小型超材料可以通过在声音被深深衰减的地方产生带隙来打破质量定律。我们还介绍了谐振器的一种修改形式,利用它来调和泛音,以扩大带隙。这项研究的结果可用于为换能器提供无源滤波,改善降噪耳机以及其他智能声学传感器和IoT音频应用。

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