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Plate-type acoustic metamaterials: Evaluation of a large-scale design adopting modularity for customizable acoustical performance

机译:板式声学超材料:采用模块化设计可定制声学性能的大规模设计评估

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With the goal of industrial applications, the scalability of finalized designs is important. If typical membrane-type acoustic metamaterials were extended to a larger scale, manufacturing issues-stress uniformity of the membrane and spatial consistency of the platelet, for example-could arise. These issues could be addressed by plate-type acoustic metamaterials with an internal tonraum resonator, which were previously shown to be potential for noise control below 1 kHz. This study presents a large-scale design (or meta-panel) adopting modularity for customizable acoustical performance. By considering two specimen configurations-without and with resonator-the results showed that the acoustical performance of each specimen configuration could be scaled and modularly combined. The acoustical performance of the meta-panel was insensitive to the specimens' orientation and arrangement. Additionally, the meta-panel could still provide up to an average insertion loss of 12.3 dB with 4% of unoccupied slots, not to mention the broadband insertion loss at 125-400 Hz and 0.8-5 kHz, beneficial for many noise environments. Consequently, the proposed design not only could address the potential manufacturing issues of large-scale membrane-type acoustic metamaterials but also could provide customizable acoustical performance, demonstrating scalability and modularity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:以工业应用为目标,最终设计的可扩展性很重要。如果将典型的膜型声学超材料扩展到更大的规模,则会出现制造问题,例如膜的应力均匀性和血小板的空间一致性。这些问题可以通过带有内部音调共振器的板型声学超材料来解决,以前已证明它们有可能将噪声控制在1 kHz以下。这项研究提出了采用模块化以实现可定制声学性能的大规模设计(或元面板)。通过考虑不带谐振器和带谐振器的两个样本配置,结果表明,每个样本配置的声学性能都可以缩放并模块化组合。后面板的声学性能对标本的方向和排列不敏感。此外,对于4%的未占用时隙,元面板仍可提供高达12.3 dB的平均插入损耗,更不用说125-400 Hz和0.8-5 kHz的宽带插入损耗了,对许多噪声环境都是有益的。因此,提出的设计不仅可以解决大规模膜式声学超材料的潜在制造问题,而且还可以提供可定制的声学性能,展示出可扩展性和模块化。 (C)2019 Elsevier Ltd.保留所有权利。

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