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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
Investigation on dynamic effective parameters of perforated thin-plate acoustic metamaterials
Release Time:2025-04-30 Hits:
Date:
2025-04-30
Title of Paper:
Investigation on dynamic effective parameters of perforated thin-plate acoustic metamaterials
Journal:
Journal of Physics D: Applied Physics
Summary:
In this paper, dynamic effective parameters of mass-type and stiffness-type perforated thin-plate acoustic metamaterials (PAMs) are investigated by numerical simulations and experiments to fundamentally reveal formation mechanisms of acoustic characteristics. The
perforated mass thin-plate acoustic metamaterial (PMAM) is proposed as a mass-type PAM, the effective mass densities (EMDs) of unperforated mass thin-plate acoustic metamaterial (UMAM) and PMAM are calculated by direct method and retrieval method, and formation mechanisms of unusual values are analyzed by EMD definition and simulated fields. A new anti-resonance frequency is produced by perforation, at where EMD is much higher than the static bulk-averaged values. In particular, EMD of PMAM is equal to that of UMAM in parallel with the air hole when perforation radius is small, but the relationship is broken when perforation radius is big. The perforated frame thin-plate acoustic metamaterial (PFAM) is proposed as a stiffness-type PAM, the EMDs calculated in numerical simulations and experiments verify the perforation effects revealed in mass-type PAM. In addition, the impacts of perforation parameters on EMD show variation trends of resonance and anti-resonance frequencies are different in two types of PAMs because perforations change system mass in the PMAM but change stiffness in the PFAM. Thus this work is of guiding significance to understand the acoustic characteristics of PAM from the perspective of dynamic effective parameters.
Co-author:
Yicai Xu, Jiu Hui Wu*, Yongqing Cai and Fuyin Ma*
Volume:
52
Page Number:
405301
Translation or Not:
No
Date of Publication:
2019-07-25

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