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Total-internal-reflection elastic metasurfaces: Design and application to structural vibration isolation

机译:全内反射弹性超表面:结构隔振的设计与应用

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摘要

This letter presents the concept of the Total Internal Reflection metasurface (TIR-MS) which supports the realization of structure-embedded subwavelength acoustic shields for elastic waves propagating in thin waveguides. The proposed metasurface design exploits extreme phase gradients, implemented via locally resonant elements, in order to achieve operating conditions that are largely beyond the critical angle. Such artificial discontinuity is capable of producing complete reflection of the incoming waves regardless of the specific angle of incidence. From a practical perspective, the TIR-MS behaves as a sound hard barrier that is impenetrable to long-wavelength modes at a selected frequency. The TIR metasurface concept is first conceived for a flat interface embedded in a rectangular waveguide and designed to block longitudinal S-0-type guided modes. Then, it is extended to circular plates in order to show how enclosed areas can be effectively shielded by incoming waves. Given the same underlying physics, an equivalent dynamic behavior was also numerically and experimentally illustrated for flexural A(0)-type guided modes. This study shows numerical and experimental evidence that, when the metasurface is excited at the target frequency, significant vibration isolation can be achieved in the presence of waves having any arbitrary angle of incidence. These results open interesting paths to achieve vibration isolation and energy filtering in certain prototypical structures of interest for practical engineering applications. Published by AIP Publishing.
机译:这封信介绍了“全内反射”超表面的概念(TIR-MS),该概念支持为细波导中传播的弹性波实现嵌入结构的亚波长声屏蔽。所提出的超表面设计利用了通过局部谐振元件实现的极限相位梯度,以实现在很大程度上超过临界角的工作条件。这种人造的不连续性能够产生入射波的完全反射,而不管入射的具体角度如何。从实际的角度来看,TIR-MS表现为一个坚硬的屏障,在选定的频率下难以穿透长波长模式。 TIR超表面概念首先是针对嵌入矩形波导中的平面界面而设计的,旨在阻止纵向S-0型引导模式。然后,将其扩展到圆形板上,以显示封闭的区域如何被入射波有效屏蔽。给定相同的基本物理原理,还针对弯曲A(0)型导引模式在数值和实验上说明了等效的动态行为。这项研究显示了数值和实验证据,当超表面以目标频率激发时,在存在具有任意入射角的波的情况下,可以实现显着的隔振效果。这些结果为在实际工程应用中感兴趣的某些原型结构中实现振动隔离和能量过滤开辟了有趣的途径。由AIP Publishing发布。

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  • 来源
    《Applied Physics Letters》 |2018年第22期|221903.1-221903.5|共5页
  • 作者单位

    Purdue Univ, Sch Mech Engn, Ray W Herrick Labs, W Lafayette, IN 47907 USA;

    Sandia Natl Labs, Albuquerque, NM 87185 USA;

  • 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
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