Dual-gradient multilayer ultra-microperforated panel composite for ultra-broadband and quasi-perfect sound absorption

Y Yujie Qian (Department of Chemistry, University of Pennsylvania 1 , Philadelphia, Pennsylvania 19104-6323,) B Bingxu Li (Key Laboratory of Maritime Intelligent Cyberspace Technology of Ministry of Education, HoHai University 1 , Changzhou 213200,) J Jie Zhang

Abstract

This study proposes and experimentally validates a multilayer composite acoustic absorber based on ultra-microperforated panels with a dual-gradient configuration, incorporating decreasing pore diameters and perforation ratios across multiple layers. The innovative design achieves ultra-broadband, wide-angle, and near-perfect sound absorption, with absorption coefficients exceeding 0.98 over a wide frequency range from 2 to 20 kHz. Comprehensive performance evaluation model based on the factor Qα is established, which accounts for both the average absorption coefficient and absorption curve smoothness and demonstrates the superiority of the dual-gradient configuration compared to single-gradient or uniform designs. Simulation and experimental results reveal that the dual-gradient distribution significantly enhances acoustic impedance matching and promotes internal resonances, facilitating efficient energy dissipation. This work represents a significant advancement in the development of thin, high-performance acoustic absorbers for applications requiring broadband and wide-angle noise control.

Article Details

Volume / Issue Vol. 126, Issue 13
Published March 01, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (3)

Y

Yujie Qian

Department of Chemistry, University of Pennsylvania 1 , Philadelphia, Pennsylvania 19104-6323,

B

Bingxu Li

Key Laboratory of Maritime Intelligent Cyberspace Technology of Ministry of Education, HoHai University 1 , Changzhou 213200,

J

Jie Zhang