Login 中文
Personal Profile
VIEW MORE
马富银,男,彝族,云南大理人,工学博士,九三学社西安交通大学委员会二支社参政议政委员。现任西安交通大学机械工程学院教授(青年拔尖人才A类),博士研究生导师,院长助理,装备所副所长,曾兼任天水师范大学机电工程学院学术院长(对口支援,2024.10-2025.09)。入选斯坦福大学世界前2%学者榜单,遴选为中国声学学会高级会员、中国振动工程学会高级会员、中国力学学会高级会员、中国汽车工程学会高级会员。国家自然科学基金...
马富银
Professor
Papers
Synergetic coupling large-scale plate-type acoustic metamaterial panel for broadband sound insulation
Release Time:2025-04-30 Hits:
Date:
2025-04-30
Title of Paper:
Synergetic coupling large-scale plate-type acoustic metamaterial panel for broadband sound insulation
Journal:
Journal of Sound and Vibration
Summary:
In the field of low-frequency noise control, the locally resonant membrane and plate-type acoustic metamaterials (PAMMs) have received extensive attention from researchers due to its sub-wavelength thickness and low surface density properties. However, the existing research works mainly focus on the sound transmission loss (STL) of small-sized unit cells with the fixed boundary, resulting in that the sound insulation performances are great different from those of the large-scale structures used in engineering applications. For this reason, a square large-scale PAMM panel with side length of 0.704 m, which consists of a periodic array of square unit cells, is numerically studied under the normal incidence condition. The results show that the large-scale PAMM panels appear the obvious STL peak (~38 dB) in the low-frequency range. Moreover, the goal of broadband sound insulation based on the multi-cells synergetic coupling is realized by reasonably arranging the masses on the metamaterial panels. Numerical results indicate that a broadband insulation with average STL higher than 20 dB is obtained in the range of 300e900 Hz. Finally, a simplified experimental setup based on the box and semi-anechoic chamber is designed to verify the sound insulation performance, and the experiment under standard reverberation chamber and semi-anechoic chamber is performed in order to evaluate the sound insulation capability in the actual reverberation noise environment. The ideal periodic boundary is used in the numerical calculations, which is obviously different from the boundary condition in experiments. Therefore, the influence of the boundary condition on the STL is discussed and analyzed by calculating the STL of the metamaterial panels with different number of cells. The proposed design methods and results can provide some guidance for the application of the PAMM panels in practical engineering.
Co-author:
Xiaopeng Wang*, Yongyong Chen, Guojian Zhou, Tianning Chen, and Fuyin Ma*
Volume:
459
Page Number:
114867
Translation or Not:
No
Date of Publication:
2019-07-30

Prev One:Time-delayed acoustic sink for extreme sub-wavelength focusing

Next One:Investigation on dynamic effective parameters of perforated thin-plate acoustic metamaterials