A passively tunable non-resonant acoustic metamaterial lens for selective ultrasonic excitation

Hongfei Zhu, F. Semperlotti
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引用次数: 21

Abstract

In this paper, we present an approach to ultrasonic beam-forming and beam-steering in structures based on the concept of embedded non-resonant acoustic metamaterial lenses. The lens design exploits the principle of acoustic drop-channel which enables the dynamic coupling of multiple ultrasonic waveguides at selected frequencies. In contrast with currently available technology, the embedded lens allows generating directional excitation by means of a single ultrasonic transducer. The lens design and performance are numerically investigated by using Plane Wave Expansion and Finite Difference Time Domain techniques applied to bulk structures. Then, the design is experimentally validated on a thin aluminum plate where the lens is implemented by through-holes. The dynamic response of the embedded lens is estimated by reconstructing, via Laser Vibrometry, the velocity field induced by a piezoelectric shaker source.
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一种用于选择性超声激发的被动可调谐非共振声学超材料透镜
本文提出了一种基于嵌入式非共振声学超材料透镜概念的结构超声波束形成和波束导向方法。透镜的设计利用了声学跌落通道的原理,使多个超声波导在选定的频率下动态耦合。与目前可用的技术相比,嵌入式透镜允许通过单个超声波换能器产生定向激励。利用体结构的平面波展开和时域有限差分技术对透镜的设计和性能进行了数值研究。然后,该设计在薄铝板上进行了实验验证,其中透镜通过通孔实现。通过激光测振法重建压电激振源引起的速度场,估计了嵌入式透镜的动态响应。
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