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Wide bandwidth acoustic transmission via coiled-up metamaterial with impedance matching layers

         

摘要

Many acoustic metamaterials suffer from a narrow bandwidth transmission because of the impedance mismatch at the airmetamaterial interface. In this paper, a two-dimensional impedance-matched metamaterial with broadband transmission performance is investigated. The impedance matching layer is introduced for a gradient variation of effective impedance from the inlet of the unit to the outlet. The effective medium theory and corresponding effective model are used to explain the underlying mechanism. The improved energy transmission of our designs is demonstrated by experiment and numerical simulation within a broad frequency bandwidth over 6 kHz. Our impedance-matched design can be used to enhance sound absorption, which is expected to present improved acoustic performance in the applications of acoustic damper and muffler.

著录项

  • 来源
    《中国科学》 |2019年第6期|P.37-44|共8页
  • 作者单位

    [1]Department of Materials Science and Engineering;

    and Shenzhen Key Engineering Lab for Powder Production for 3D Printing of Aircraft Engines;

    Southern University of Science and Technology;

    Shenzhen 518055;

    China;

    [2]Department of Electrical and Computer Engineering;

    National University of Singapore;

    Singapore 117583;

    Singapore;

    [2]Department of Electrical and Computer Engineering;

    National University of Singapore;

    Singapore 117583;

    Singapore;

    [1]Department of Materials Science and Engineering;

    and Shenzhen Key Engineering Lab for Powder Production for 3D Printing of Aircraft Engines;

    Southern University of Science and Technology;

    Shenzhen 518055;

    China;

    [2]Department of Electrical and Computer Engineering;

    National University of Singapore;

    Singapore 117583;

    Singapore;

    [1]Department of Materials Science and Engineering;

    and Shenzhen Key Engineering Lab for Powder Production for 3D Printing of Aircraft Engines;

    Southern University of Science and Technology;

    Shenzhen 518055;

    China;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 功能材料;
  • 关键词

    general linear acoustics; structural acoustics and vibration; acoustical measurements and instrumentation; wavestructure interactions;

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