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Three-dimensional resonating metamaterials for low-frequency vibration attenuation

机译:三维共振超材料用于低频振动衰减

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摘要

Recent advances in additive manufacturing have enabled fabrication of phononic crystals and metamaterials which exhibit spectral gaps, or stopbands, in which the propagation of elastic waves is prohibited by Bragg scattering or local resonance effects. Due to the high level of design freedom available to additive manufacturing, the propagation properties of the elastic waves in metamaterials are tunable through design of the periodic cell. In this paper, we outline a new design approach for metamaterials incorporating internal resonators, and provide numerical and experimental evidence that the stopband exists over the irreducible Brillouin zone of the unit cell of the metamaterial (i.e. is a three-dimensional stopband). The targeted stopband covers a much lower frequency range than what can be realised through Bragg scattering alone. Metamaterials have the ability to provide (a) lower frequency stopbands than Bragg-type phononic crystals within the same design volume, and/or (b) comparable stopband frequencies with reduced unit cell dimensions. We also demonstrate that the stopband frequency range of the metamaterial can be tuned through modification of the metamaterial design. Applications for such metamaterials include aerospace and transport components, as well as precision engineering components such as vibration-suppressing platforms, supports for rotary components, machine tool mounts and metrology frames.
机译:增材制造的最新进展使得能够制造具有频谱间隙或阻带的声子晶体和超材料,其中布拉格波或局部共振效应阻止了弹性波的传播。由于可用于增材制造的高度设计自由度,超材料中弹性波的传播特性可通过周期单元的设计进行调整。在本文中,我们概述了一种包含内部谐振器的超材料的新设计方法,并提供了数值和实验证据,表明阻带存在于超材料的晶胞的不可还原的布里渊区(即三维阻带)上。目标阻带所覆盖的频率范围比仅通过布拉格散射所能实现的低得多。超材料具有提供(a)在相同设计体积内比布拉格型声子晶体低的频率阻带和/或(b)在减小的晶胞尺寸下可比的阻带频率的能力。我们还证明,可以通过修改超材料的设计来调整超材料的阻带频率范围。这种超材料的应用包括航空航天和运输组件,以及精密工程组件,例如减振平台,旋转组件的支架,机床安装架和计量框架。

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