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Reduction of Sound Transmission Through Finite Clamped Metamaterial-Based Double-Wall Sandwich Plates with Poroelastic Cores

机译:通过有限夹紧的超材料双壁夹层板进行声音传输,具有多孔弹性核心

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摘要

Finite structures play a more realistic role in applications designed for sound and vibration isolation. Double-panel structure with poroelastic cores is able to exhibit a superior sound insulation performance in mid-high frequency range, while is relatively inferior to isolate waves at low frequencies. In order to further reduce sound transmission at low frequencies and cater for the actual situation, this paper decides to introduce the metamaterial concept into finite double-wall sandwich plates and presents an analytical model to calculate the sound transmission loss through the metamaterial-based double-panel with fully clamped boundary conditions. The metamaterial-based double-wall sandwich plates are constructed by replacing the bare panel with the metamaterial plate, consisting of a homogeneous plate and periodically attached local resonators. Biot's theory is used to examine the wave propagation in the poroelastic medium. The vibro-acoustic problem of the proposed sandwich plate is solved by employing the modal superposition theory and the Galerkin method. Numerical results show that the sound transmission is significantly reduced at low frequencies. Unique phenomena caused by attached local resonators are explained and the effects of resonator inerter, incident angles and damping on the sound insulation properties are also studied.
机译:有限结构在设计用于声音和振动隔离的应用中起更现实的作用。具有多孔弹性芯的双面板结构能够在中高频范围内具有出色的隔音性能,而在低频下隔离波的相对较差。为了进一步降低低频的声音传输和迎合实际情况,该论文决定将超材料概念引入有限的双壁夹层板,并提出了一种通过基于星系的双层的声音传输损失来计算分析模型。具有完全夹紧边界条件的面板。通过用超级板块更换裸面板,由超大板组成,包括均匀板和周期性附加的局部谐振器来构造超金属石双壁夹层板。 BIOS的理论用于检查多孔介质中的波传播。通过使用模态叠加理论和Galerkin方法来解决所提出的夹层板的振动声学问题。数值结果表明,声音传输在低频下显着降低。还研究了由附加局部谐振器引起的独特现象,并且还研究了谐振器活性,入射角和阻尼在隔音性质上的影响。

著录项

  • 来源
    《Acta acustica united with acustica》 |2019年第5期|共19页
  • 作者

    Li Jingru; Yang Peng; Li Sheng;

  • 作者单位

    Hainan Univ Mech &

    Elect Engn Coll Haikou 570228 Hainan Peoples R China;

    Hainan Univ Mech &

    Elect Engn Coll Haikou 570228 Hainan Peoples R China;

    Dalian Univ Technol Sch Naval Architecture Fac Vehicle Engn &

    Mech State Key Lab Struct Anal Ind Equipment Dalian 116024 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 声学;
  • 关键词

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