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Polarization bandgaps and fluid-like elasticity in fully solid elastic metamaterials

机译:完全固态弹性超材料中的极化带隙和类流体弹性

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摘要

Elastic waves exhibit rich polarization characteristics absent in acoustic and electromagnetic waves. By designing a solid elastic metamaterial based on three-dimensional anisotropic locally resonant units, here we experimentally demonstrate polarization bandgaps together with exotic properties such as ‘fluid-like' elasticity. We construct elastic rods with unusual vibrational properties, which we denote as ‘meta-rods'. By measuring the vibrational responses under flexural, longitudinal and torsional excitations, we find that each vibration mode can be selectively suppressed. In particular, we observe in a finite frequency regime that all flexural vibrations are forbidden, whereas longitudinal vibration is allowed—a unique property of fluids. In another case, the torsional vibration can be suppressed significantly. The experimental results are well interpreted by band structure analysis, as well as effective media with indefinite mass density and negative moment of inertia. Our work opens an approach to efficiently separate and control elastic waves of different polarizations in fully solid structures.
机译:弹性波表现出在声波和电磁波中没有的丰富的极化特性。通过基于三维各向异性局部共振单元设计固体弹性超材料,我们在此实验性地证明了极化带隙以及诸如“类流体”弹性之类的奇特特性。我们制造具有异常振动特性的弹性棒,我们将其称为“超棒”。通过测量在弯曲,纵向和扭转激励下的振动响应,我们发现可以选择性地抑制每个振动模式。特别是,我们在有限的频率范围内观察到,所有弯曲振动都是被禁止的,而纵向振动是被允许的,这是流体的独特属性。在另一种情况下,可以显着抑制扭转振动。通过带结构分析以及质量不确定且负惯性矩为负的有效介质,可以很好地解释实验结果。我们的工作为有效分离和控制全固态结构中不同极化的弹性波提供了一种方法。

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