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EXPERIMENTAL STUDY OF THE TRANSMISSION SPECTRUM OF A SONIC/ULTRASONIC ACOUSTIC METAMATERIAL

机译:声波/超声波声学超材料传输光谱的实验研究

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Acoustic metamaterials have received much attention recently. In the past decades, countless structures have been studied for their novel physical phenomenon or potential applications. The goals of many of the works were to explore ways to enlarge the band gap, lower the band gap frequency, and/or generate greater attenuation of vibration. However, most of the work was limited to simulation, with experimental studies rarer. In this work, we would like to experimentally present the transmission spectrum of an acoustic metamaterial with a proposed structure called the coated double hybrid lattice (CDHL) [1]. The CDHL has both crystalline structure and local resonators, which provide high-frequency and low-frequency band gaps, respectively. A structure was fabricated and tested to experimentally determine the transmission spectrum. Both, a higher frequency band gap and a lower frequency band gap, were obtained. Vibration is clearly attenuated in the frequency range of 70-90 kHz. This is due to the Bragg scattering effect. At the same time, around the frequency of 4.8kHz, another band gap is observed which is attributed to local resonance. It turns out that our experimental results coincide with our previous simulation quite well.
机译:声学超材料最近受到了很多关注。在过去的几十年中,已经研究了他们的新型物理现象或潜在应用的无数结构。许多作品的目标是探讨扩大带隙的方法,降低带隙频率,和/或产生更大的振动衰减。然而,大部分工作都仅限于模拟,实验研究稀有。在这项工作中,我们想通过称为涂覆的双杂交晶格(CDH1)的所提出的结构,通过提出的结构进行实验呈现声学超材料的透射光谱。 CDHL具有晶体结构和局部谐振器,其分别提供高频和低频带间隙。制造和测试结构以实验确定透射光谱。获得,获得较高的频带隙和较低的频带隙。振动在70-90kHz的频率范围内明显衰减。这是由于布拉格散射效果。同时,围绕4.8kHz的频率,观察到归因于局部谐振的另一个带隙。事实证明,我们的实验结果与我们以前的模拟相当吻合。

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