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Aerogels-filled Helmholtz resonators for enhanced low-frequency sound absorption

机译:Aerogels填充的Helmholtz谐振器,用于增强低频吸音

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摘要

Aerogels are highly porous materials with diverse properties, such as ultralow density, high specific surface area, and extremely low thermal conductivity. These unique features offer them unparalleled potentials for applications in sound absorption. Here, we present a composite structure for acoustic absorption, which is constructed by filling the designed Helmholtz resonators (HRs) with three types of granular aerogels with various thicknesses (5, 10, 15 and 20 mm). The transmission loss and absorption coefficient are investigated at low frequency range from 200 to 2500 Hz. The measurement results show that the composite structures not only increase the absorption level and bandwidth, but also provide a simple tunability of frequency bands for sound absorption. This novel combination of resonant structure and aerogels paves the route towards designing highly tunable and efficient acoustic composite devices for noise absorption in vent and pipeline systems. (C) 2019 Elsevier B.V. All rights reserved.
机译:气凝胶是高度多孔的材料,具有不同的性质,例如超级密度,高比表面积和极低的导热性。这些独特的功能为它们提供了无与伦比的应用在吸音中的潜力。这里,我们提出了一种用于声学吸收的复合结构,其通过用具有三种类型的具有各种厚度(5,10,15和20mm)的三种类型的颗粒气凝胶来构造。在200至2500Hz的低频范围内研究传输损耗和吸收系数。测量结果表明,复合结构不仅增加了吸收水平和带宽,还提供了用于吸声的频带的简单可调性。这种新颖的谐振结构和气凝胶组合铺设了设计高度可调谐和有效的声学复合装置,用于发泄器和管道系统中的噪声吸收。 (c)2019年Elsevier B.V.保留所有权利。

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