2022
DOI: 10.1177/09544062221104388
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Acoustic performance of architected hybrid metamaterials for sound attenuation applications

Abstract: Acoustic insulators in sound attenuation applications usually have a structure with a characteristic dimensions equivalent to the operating wavelength, posing significant challenges in low-frequency sound attenuation applications. Recent advancements in material science, advanced materials called acoustic metamaterials (AMMs) have paved the way for designing efficient noise insulation passive and active devices. This paper proposes heterogeneous integrated passive metamaterials for enhanced sound insulation in… Show more

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“…The background fluid medium is the air (ρ 0 = 1.21 kg/m 3 , c 0 = 343 m/s) in the coiled channel inside the structure, while the solid material is photosensitive resin (ρ = 1130 kg/m 3 , longitudinal elastic wave c p = 1545.76 m/s) with high hardness. Therefore, the shear modes within solid structures can be safely ignored during acoustic propagation [25,26]. Specifically, it can be assumed that solids are very hard so that sound waves only propagate in the air channel of twodimensional acoustic metamaterials.…”
Section: The Simplest Brillouin Zone Of Two-dimensional Asymmetric Ac...mentioning
confidence: 99%
“…The background fluid medium is the air (ρ 0 = 1.21 kg/m 3 , c 0 = 343 m/s) in the coiled channel inside the structure, while the solid material is photosensitive resin (ρ = 1130 kg/m 3 , longitudinal elastic wave c p = 1545.76 m/s) with high hardness. Therefore, the shear modes within solid structures can be safely ignored during acoustic propagation [25,26]. Specifically, it can be assumed that solids are very hard so that sound waves only propagate in the air channel of twodimensional acoustic metamaterials.…”
Section: The Simplest Brillouin Zone Of Two-dimensional Asymmetric Ac...mentioning
confidence: 99%