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Frequency graded 1D metamaterials: A study on the attenuation bands

机译:频率分级一维超材料:衰减带的研究

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摘要

Depending on the frequency, waves can either propagate (transmission band) or be attenuated (attenuation band) while travelling through a one-dimensional spring-mass chain with internal resonators. The literature on wave propagation through a 1D mass-in-mass chain is vast and continues to proliferate because of its versatile applicability in condensed matter physics, optics, chemistry, acoustics, and mechanics. However, in all these areas, a uniformly periodic arrangement of identical linear resonating units is normally used which limits the attenuation band to a narrow frequency range. To counter this limitation of linear uniformly periodic metamaterials, the attenuation bandwidth in a one-dimensional finite chain with frequency graded linear internal resonators are investigated in this paper. The result shows that a properly tuned frequency graded arrangement of resonating units can extend the upper part of the attenuation band of 1D metamaterial theoretically up to infinity and also increases the lower part of the attenuation bandwidth by around 40% of an equivalent uniformly periodic metamaterial without increasing the mass. Therefore, the frequency graded metamaterials can be a potential solution towards low frequency and wideband acoustic or vibration insulation. In addition, this paper provides analytical expressions for the attenuation and transmission frequency limits for a periodic mass-in-mass metamaterial and demonstrates the attenuation band is generated by the high absolute value of the effective mass not only due to the negative effective mass.
机译:根据频率,在通过带有内部谐振器的一维弹簧质量链传播时,波可以传播(传输带)或被衰减(衰减带)。关于一维质量链中波传播的文献非常丰富,并且由于其在凝聚态物理,光学,化学,声学和力学中的广泛应用而继续泛滥。然而,在所有这些区域中,通常使用相同线性谐振单元的均匀周期性布置,这将衰减带限制在狭窄的频率范围内。为了克服线性均匀周期超材料的这种局限性,本文研究了带有频率分级线性内部谐振器的一维有限链中的衰减带宽。结果表明,合理调谐的谐振单元的频率分级排列可以将一维超材料的衰减带的上部理论上扩展到无穷大,并且还可以将衰减带宽的下部增加等效等周期超材料的40%左右,而无需增加质量。因此,频率分级的超材料可能是实现低频和宽带声学或振动绝缘的潜在解决方案。另外,本文提供了周期性质量块超材料的衰减和传输频率极限的解析表达式,并证明了衰减带是由有效质量的高绝对值生成的,而不仅仅是归因于负有效质量。

著录项

  • 来源
    《Journal of Applied Physics 》 |2017年第7期| 075101.1-075101.12| 共12页
  • 作者单位

    Department of Mechanical Engineering, University of Auckland, Auckland, New Zealand,Advanced Materials Group, Callaghan Innovation, Auckland, New Zealand;

    Sir Lawrence Wackett Aerospace Research Centre, RMIT University, Melbourne, VIC, Australia;

    Advanced Materials Group, Callaghan Innovation, Auckland, New Zealand;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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