多层多孔材料埋头微孔板的声学性能

IF 1.4 Q3 ACOUSTICS
L. Yuvaraj, S. Jeyanthi
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引用次数: 11

摘要

本研究研究了沉孔微孔板的声学性能,以及多层多孔吸收体结构中使用的两种不同的多孔材料。增材制造被应用于在聚合物微孔板上产生具有不同孔间距的亚毫米穿孔。在阻抗管中进行了实验,研究了穿孔率、气隙和不同多孔层结构对吸声性能的影响。为了验证,考虑到微孔板中的收敛孔轮廓,使用带端部校正的积分方法来计算锥形截面阻抗,对于均匀孔使用传统的Maa理论。采用传递矩阵法计算了多层吸收体的理论阻抗,并与实验结果进行了比较。结果表明,沉孔微孔板的吸声性能显著提高,多孔材料的引入扩大了吸声带宽。此外,结果表明,吸声能力取决于多层吸声器结构中多孔材料的放置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acoustic performance of countersunk micro-perforated panel in multilayer porous material
This study investigates the acoustic performance of a countersunk micro-perforated panel, along with two distinct porous materials used in a multilayer porous absorber configuration. Additive manufacturing is applied to create sub-millimeter perforation with different hole spacings on polymer micro-perforated panels. Experiments are conducted in an impedance tube, in which the effects of the perforation ratio, air gap, and varying porous layer configurations on the sound absorption capabilities are investigated. For validation, considering the converging hole profile in the micro-perforated panel, an integration method with end correction is used to calculate the tapered section impedance, and the traditional Maa theory is used for the uniform hole. The theoretical impedance of the multilayer absorber is calculated using the transfer matrix method and subsequently compared to the experimental results. The results demonstrate that the countersunk hole micro-perforated panel exhibits a significant improvement in sound absorption, and the introduction of porous materials extends the sound absorption bandwidth. Furthermore, the results indicate that the sound absorption capability depends on the porous material placement in the multilayer absorber configuration.
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来源期刊
BUILDING ACOUSTICS
BUILDING ACOUSTICS ACOUSTICS-
CiteScore
4.10
自引率
11.80%
发文量
22
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