High Temperature Effect on Absorption Coefficient of M-MPPs and Sandwich Structures Coupled with MPPs

Daliwa Joseph Bainamndi, Emmanuel Syriabe, S. Y. Doka, G. Ntamack
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Abstract

This paper addresses the effect of high temperature on absorption performance of sandwich material coupled with microperforated panels (MPPs) in multiple configurations using a finite element model (FEM) over a frequency range from 10 to 3000 Hz. The structure is backed with a rigid wall which can either be Aluminium or Al-Alloy used in aeronautic or automobile. The wave propagation in porous media is addressed using Johnson Champoux Allard model (JCA). The FEM model developed using COMSOL Multiphysics software makes it possible to predict the acoustic absorption coefficient in multilayer microperforated panels (M-MPPs) and sandwich structure. It is shown that, when structures made by MPPs or sandwich materials are submitted to high temperature, the absorption performance of the structure is strongly modified in terms of amplitude and width of the bandgap. For application in sever environment (noise reduction in engines aircrafts), Temperature is one of the parameters that will most influence the absorption performance of the structure. However, for application in the temperature domain smaller than 50?C (automotive applications for example), the effect of temperature is not significant on absorption performance of the structure.
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高温对M-MPPs及其耦合夹层结构吸收系数的影响
本文使用有限元模型(FEM),在10至3000Hz的频率范围内,研究了高温对多种配置下与微穿孔板(MPP)耦合的夹层材料吸收性能的影响。该结构由刚性壁支撑,该刚性壁可以是航空或汽车中使用的铝或铝合金。利用Johnson—Champoux—Allard模型(JCA)研究了波在多孔介质中的传播。使用COMSOL Multiphysics软件开发的有限元模型可以预测多层微穿孔板(M-MPP)和夹层结构的吸声系数。研究表明,当由MPP或夹层材料制成的结构经受高温时,结构的吸收性能在带隙的幅度和宽度方面发生了强烈的变化。对于在恶劣环境中的应用(发动机飞机的降噪),温度是对结构吸收性能影响最大的参数之一。然而,对于小于50?C(例如汽车应用),温度对结构的吸收性能的影响并不显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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