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Narrow Band Solid-Liquid Composite Arrangements: Alternative Solutions for Phononic Crystal-Based Liquid Sensors

机译:窄带固液复合材料布置:基于声子晶体的液体传感器的替代解决方案

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摘要

Periodic elastic composite structures attract great attention. They offer the ability to design artificial properties to advance the control over the propagation of elastic/acoustic waves. In previous work, we drew attention to composite periodic structures comprising liquids. It was shown that the transmission spectrum of the structure, specifically a well-isolated peak, follows the material properties of liquid constituent in a distinct manner. This idea was realized in several liquid sensor concepts that launched the field of phononic crystal liquid sensors. In this work we introduce a novel concept—narrow band solid-liquid composite arrangements. We demonstrate two different concepts to design narrow band structures, and show the results of theoretical studies and results of experimental investigations that confirm the theoretical predictions. This work extends prior studies in the field of phononic crystal liquid sensors with novel concepts and results that have a high potential in a field of volumetric liquid properties evaluation.
机译:周期性弹性复合结构引起了极大的关注。它们提供了设计人造属性的能力,以推进对弹性/声波传播的控制。在以前的工作中,我们提请注意包含液体的复合周期性结构。结果表明,该结构的透射光谱,特别是一个良好隔离的峰,以独特的方式跟随液体成分的材料特性。这个想法在几个液体传感器概念中得以实现,这些概念开创了声子晶体液体传感器领域。在这项工作中,我们介绍了一个新颖的概念-窄带固液复合装置。我们演示了设计窄带结构的两个不同概念,并显示了理论研究的结果和证实理论预测的实验研究的结果。这项工作以新颖的概念和结果扩展了声子晶体液体传感器领域的先前研究,这些结果在体积液体性质评估领域具有很高的潜力。

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