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The impact of resonant additions' footprint on the stop band behavior of 1D locally resonant metamaterial realizations

机译:谐振的影响对1D局部共振超材料实现的止动频段行为的影响

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Metamaterials have been proven to hold potential to enhance the Noise, Vibration and Harshness (NVH) performance in several applications, as they can create stop bands, which lead to frequency zones of pronounced noise and/or vibration attenuation. This paper investigates the influence of the footprint between resonant inclusions and host structure on the stop band behavior of metamaterials. The impact of this design feature is assessed both numerically and experimentally. Numerically, it is shown that by increasing the footprint, the stop bands (SB) become narrower and shift to higher frequencies. Applied to finite structures, it is shown that the zones of pronounced vibration attenuation tend to follow the changes in the stop band limits. The experimental validation is performed on metamaterial beams and the results comply with the numerical model. This investigation demonstrates that the footprint of resonators is a design parameter which can have a beneficial effect when taken into account during the design stage of matematerials. (C) 2020 Elsevier Ltd. All rights reserved.
机译:超材料已被证明在若干应用中具有增强噪声、振动和粗糙度(NVH)性能的潜力,因为它们可以产生阻带,从而导致显著噪声和/或振动衰减的频率区。本文研究了共振夹杂物和主体结构之间的足迹对超材料阻带行为的影响。通过数值和实验评估了该设计特征的影响。数值计算表明,通过增加足迹,阻带(SB)变得更窄,并移向更高的频率。将其应用于有限结构,结果表明,振动衰减明显的区域往往随阻带极限的变化而变化。对超材料梁进行了实验验证,结果与数值模型相符。这项研究表明,谐振器的占地面积是一个设计参数,在材料设计阶段考虑到这一点时,可以产生有益的影响。(C) 2020爱思唯尔有限公司版权所有。

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