2019
DOI: 10.1016/j.jsv.2019.114884
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Low-frequency sound absorption of elastic micro-perforated plates in a parallel arrangement

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Cited by 34 publications
(11 citation statements)
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“…For MCPs, minute tubes radius with respect to the channels length ensures that these end-effects are negligible with respect to the inner effects described by Eq. (14). They are even further reduced due to paramount hole interaction effects, for instance by a factor 8 when s ¼ 50% [42].…”
Section: Mcps Morphology Usage and Fabricationmentioning
confidence: 99%
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“…For MCPs, minute tubes radius with respect to the channels length ensures that these end-effects are negligible with respect to the inner effects described by Eq. (14). They are even further reduced due to paramount hole interaction effects, for instance by a factor 8 when s ¼ 50% [42].…”
Section: Mcps Morphology Usage and Fabricationmentioning
confidence: 99%
“…withk 0;r ¼ Àj ffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffiffi Z v;r Y t; r p a complex wavenumber that accounts for viscothermal attenuation at the adaptor walls, r 0 being replaced by r c in Eqs. (14) and (20) to get Z v;r and Y t; r in continuum regime. The absorption coefficient is then readily obtained from Eq.…”
Section: Experimental Studymentioning
confidence: 99%
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“…Conventional materials have a limited ability to control low-frequency noise. Thus, due to their excellent low-frequency acoustic performance, micro-perforated plates have been extensively studied by scientific researchers [1][2][3]. In micro-perforated plates, the diameter of perforation is less than 1 mm; therefore, the broadband sound absorption effect is better than the resonance sound absorption in conventional perforated plates.…”
Section: Introductionmentioning
confidence: 99%
“…21,22 Several reports about the preparation of composite sound-absorbing structures have been published, regarding unique composite structures of membrane and perforated sound-absorbing structures. Based on the principle of the internal resonance effect, 23 these composite sound-absorbing structures can achieve excellent sound absorption performance at mid-low frequency, 24,25 while maintaining good sound absorption performance at high frequency with the help of the principle of porous sound absorption. 26 Therefore, these composite sound-absorbing structures are expected to have a significant impact on specific engineering applications.…”
mentioning
confidence: 99%