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Acoustic properties of multilayer sound absorbers with a 3D printed micro-perforated panel

机译:具有3D打印的微孔板的多层吸声器的声学特性

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This paper investigates the acoustic absorption capability of a multilayer micro-perforated panel absorber (MPPA) whose front layer is produced by additive manufacturing, The MPPA layers are printed using a polymer material, where the different hole spacing is used to create different perforation ratios. The sound absorption coefficients are experimentally measured by using an impedance tube test, to investigate the effects of the perforation ratio and the depth of an airgap behind the MPPA. Also, a porous sound absorbing material layer is attached behind the MPPA layer in order to produce a multilayer acoustic absorber. The measurement results are compared to a theoretical approach. The comparisons show that the measured sound absorption coefficients agree fairly well with the theoretical model. The use of a porous sound absorbing material behind the MPPA broadens the frequency bandwith of the multilayer acoustic absorber. The frequency of the maximum sound absorption coefficient can be varied, by altering the perforation ratio of the MPPA and/or the depth of the airgap behind the panel. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了多层微孔板式吸声器(MPPA)的吸声能力,该吸声器的前层是通过增材制造来制造的。MPPA层是使用聚合物材料印刷的,其中不同的孔间距用于产生不同的穿孔率。吸声系数通过使用阻抗管测试实验测量,以研究穿孔率和MPPA后面的气隙深度的影响。另外,在MPPA层的后面附着有多孔的吸音材料层,以制造多层吸声体。将测量结果与理论方法进行比较。比较表明,测得的吸声系数与理论模型相当吻合。 MPPA后面使用多孔吸声材料可拓宽多层吸声器的频带。通过改变MPPA的穿孔率和/或面板后面的气隙深度,可以改变最大吸声系数的频率。 (C)2017 Elsevier Ltd.保留所有权利。

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