A hybrid method of predicting the acoustical properties of multi-layered materials

Author:

Li Zechao1ORCID,Yang Lin1,Ren Hongbin1,Chen Sizhong1,Liu Zheng1,Feng Jianbo2,Gao Zepeng1,Chen Yong1

Affiliation:

1. Automotive Research Institute, School of Mechanical Engineering, Beijing Institute of Technology, China

2. Beijing University of Civil Engineering and Architecture, China

Abstract

Many numerical and measuring approaches are widely used in predicting and analysing the acoustic performances of laminated materials for noise control applications. However, numerical methods generally require a set of non-acoustic parameters, and the measuring methods are not available for exceedingly thick materials. The main aim of this article is to address a hybrid approach of evaluating the normal incidence sound transmission loss and absorption coefficients of multi-layered materials. This method is performed with some special parameters that contain the sound transmission and reflection coefficients of each sub-layer of a multi-layer specimen and can be measured by a standing wave tube system. The accuracy and feasibility of the present method are validated by the experimental and numerical comparisons between different methods and samples. Moreover, this present approach can be applied as a numerical tool of estimating the acoustical behaviours of multi-layered structures in noise control treatments, such as automotive, building and aerospace industries.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Mechanics of Materials,Aerospace Engineering,Automotive Engineering,General Materials Science

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