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Meta-silencer with designable timbre
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作者 Nengyin Wang Chengcheng zhou +8 位作者 Sheng Qiu Sibo Huang Bin Jia Shanshan Liu Junmei Cao zhiling zhou Hua Ding Jie Zhu Yong Li 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2023年第2期230-242,共13页
Timbre,as one of the essential elements of sound,plays an important role in determining sound properties,whereas its manipulation has been remaining challenging for passive mechanical systems due to the intrinsic disp... Timbre,as one of the essential elements of sound,plays an important role in determining sound properties,whereas its manipulation has been remaining challenging for passive mechanical systems due to the intrinsic dispersion nature of resonances.Here,we present a meta-silencer supporting intensive mode density as well as highly tunable intrinsic loss and offering a fresh pathway for designable timbre in broadband.Strong global coupling is induced by intensive mode density and delicately modulated with the guidance of the theoretical model,which efficiently suppresses the resonance dispersion and provides desirable frequency-selective wave-manipulation capacity for timbre tuning.As proof-of-concept demonstrations for our design concepts,we propose three meta-silencers with the designing targets of high-efficiency broadband sound attenuation,efficiency-controlled sound attenuation and designable timbre,respectively.The proposed meta-silencers all operate in a broadband frequency range from 500 to 3200 Hz and feature deep-subwavelength sizes around 50 mm.Our work opens up a fundamental avenue to manipulate the timbre with passive resonances-controlled acoustic metamaterials and may inspire the development of novel multifunctional devices in noise-control engineering,impedance engineering,and architectural acoustics. 展开更多
关键词 designable timbre acoustic metamaterial multi-functional sound silencer resonance modulation
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基于弱吸声单元耦合的轻薄宽频吸声结构 被引量:11
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作者 黄思博 周志凌 +4 位作者 李东庭 刘拓 王旭 祝捷 李勇 《Science Bulletin》 SCIE EI CAS CSCD 2020年第5期373-379,共7页
寻求具有深亚波长厚度的宽频强吸声体一直是声学研究及噪声控制工程领域中的难题.为拓宽吸声频带,传统设计思路将一系列强共振单元组成阵列,利用它们的吸声峰"拼接"成具有一定宽度的吸声频带.然而该设计要求每一个共振单元本... 寻求具有深亚波长厚度的宽频强吸声体一直是声学研究及噪声控制工程领域中的难题.为拓宽吸声频带,传统设计思路将一系列强共振单元组成阵列,利用它们的吸声峰"拼接"成具有一定宽度的吸声频带.然而该设计要求每一个共振单元本身都具有非常高效的吸声性能,这种严苛的条件往往制约了整体结构的厚度.本文提出了一种新的设计理念,通过强化一系列弱共振单元之间的耦合作用来实现一种新型的轻薄宽频强吸声结构.基于该设计理念,尽管每个弱共振单元本身仅具有相当低的吸声峰值,但通过调控单元之间的耦合作用,使得整体吸声结构在宽频范围(870~3224 Hz)内实现吸声性能的大幅提升(平均吸声系数0.957),同时结构厚度相较于传统设计方法得到显著缩减(厚度仅3.9 cm).该研究为超薄宽频吸声结构研究开辟了新的途径,也为结构表面声阻抗调控相关研究领域提供了一种革新的设计思路. 展开更多
关键词 BROADBAND ACOUSTIC SINK ACOUSTIC metasurface COHERENT COUPLING Imperfect components
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