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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Towards acoustic metafoams: The enhanced performance of a poroelastic material with local resonators
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Towards acoustic metafoams: The enhanced performance of a poroelastic material with local resonators

机译:迈向声学超泡沫:具有局部谐振器的多孔弹性材料的增强性能

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摘要

Acoustic foams are commonly used for sound attenuation purposes. Due to their porous microstructure, they efficiently dissipate energy through the air flowing in and out of the pores at high frequencies. However, the low frequency performance is still challenging for foams, even after optimisation of their microstructural design. A new, innovative, approach is therefore needed to further improve the acoustic behaviour of poroelastic materials. The expanding field of locally resonant acoustic metamaterials shows some promising examples where resonating masses incorporated within the microstructure lead to a significant enhancement of low frequency wave attenuation. In this paper, a combination of traditional poroelastic materials with locally resonant units embedded inside the pores is proposed, showing the pathway towards designing acoustic metafoams: poroelastic materials with properties beyond standard foams. The conceptual microstructural design of an idealised unit cell presented in this work consists of a cubic pore representing a foam unit cell with an embedded micro-resonator and filled with a viscothermal fluid (air). Analysis of complex dispersion diagrams and numerical transmission simulations demonstrate a clear improvement in wave attenuation achieved by such a microstructure. It is believed that this demonstrates the concept, which serves the future development of novel poroelastic materials. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:声学泡沫通常用于声音衰减的目的。由于其多孔的微观结构,它们可以通过高频高效地耗散通过空气流入和流出孔隙的能量。然而,即使优化了泡沫的微观结构设计,其低频性能仍然对泡沫具有挑战性。因此,需要一种新的,创新的方法来进一步改善多孔弹性材料的声学性能。局部共振声超材料的扩展领域显示了一些有希望的例子,其中结合在微结构中的共振质量导致低频波衰减的显着增强。在本文中,提出了将传统的多孔弹性材料与嵌入孔中的局部共振单元相结合的方法,这表明了设计声超泡沫的途径:具有超越标准泡沫性能的多孔弹性材料。在这项工作中提出的理想化晶胞的概念性微观结构设计由一个立方孔组成,该孔代表具有嵌入式微谐振器并填充有粘热流体(空气)的泡沫晶胞。对复杂的色散图和数值传输模拟的分析表明,通过这种微结构可以显着改善波衰减。可以相信,这证明了这一概念,为新型多孔弹性材料的未来发展服务。 (C)2018作者。由Elsevier Ltd.发布

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