基于带宽增强的亚波长成像宽带声超材料透镜

IF 3.4 2区 物理与天体物理 Q1 ACOUSTICS
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引用次数: 0

摘要

利用天然材料制造的声超材料可以通过几何结构设计和共振效应表现出自然界材料所不具备的奇特特性,声超材料可以作为声超材料透镜(AML)实现亚波长声学成像。目前,基于法布里-佩罗(Fabry-Pérot,FP)共振原理的超材料透镜都是单有效长度孔,这与其结构厚度直接相关。它们只能在相对较窄的频率范围内实现声学成像,还没有一种 AML 可以实现宽带亚波长声学成像。本文介绍了一种宽带声超材料透镜(BAML)。在保持超材料透镜整体厚度不变的情况下,提出了一种由不同有效长度孔交叉分布的超单元组成的设计。这种设计使这些超级单元形成的 AML 能够涵盖与各种孔相对应的多个工作频率,从而拓宽了声学成像的频率范围。研究人员进行了有限元模拟和成像实验,结果表明由多个有效长度孔组成的 BAML 能够提高声成像的带宽。与单有效长度孔的 AML 相比,它的成像频率范围更广,这种设计提供了一种通用的带宽增强方法。BAML 在超声波成像、吸声、智能热控制和医疗诊断方面具有潜在的应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A broadband acoustic metamaterial lens for sub-wavelength imaging based on bandwidth enhancement

Acoustic metamaterials manufactured from natural materials can exhibit exotic characteristics that cannot be found in nature materials through the design of geometric structures and resonance effects, and acoustic metamaterials can be used to achieve sub-wavelength acoustic imaging as the acoustic metamaterial lens (AML). Currently, the AMLs based on the Fabry–Pérot (FP) resonance principle are all with single effective length hole, which is directly related to the thickness of its structure. They can only achieve acoustic imaging in a relatively narrow frequency range, and there is no AML which can achieve broadband sub-wavelength acoustic imaging. In this paper, a kind of broadband acoustic metamaterial lens (BAML) is introduced. While maintaining a constant overall thickness of the AML, a design which is composed of the supercell consisting of a cross distribution of different effective length holes is proposed. This design enables the AML formed by these supercells to encompass multiple operating frequencies corresponding to various holes, thereby broadening the frequency range of acoustic imaging. Finite element simulation and imaging experiments were conducted, and results demonstrated that the BAML consisting of multiple effective length holes has the ability to enhance bandwidth of acoustic imaging. Compared to AML with single effective length hole, it offers a broader range of imaging frequencies, this design offers a general method of bandwidth enhancement. BAML has potential application value in ultrasonic imaging, sound absorption, intelligent thermal control and medical diagnosis.

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来源期刊
Applied Acoustics
Applied Acoustics 物理-声学
CiteScore
7.40
自引率
11.80%
发文量
618
审稿时长
7.5 months
期刊介绍: Since its launch in 1968, Applied Acoustics has been publishing high quality research papers providing state-of-the-art coverage of research findings for engineers and scientists involved in applications of acoustics in the widest sense. Applied Acoustics looks not only at recent developments in the understanding of acoustics but also at ways of exploiting that understanding. The Journal aims to encourage the exchange of practical experience through publication and in so doing creates a fund of technological information that can be used for solving related problems. The presentation of information in graphical or tabular form is especially encouraged. If a report of a mathematical development is a necessary part of a paper it is important to ensure that it is there only as an integral part of a practical solution to a problem and is supported by data. Applied Acoustics encourages the exchange of practical experience in the following ways: • Complete Papers • Short Technical Notes • Review Articles; and thereby provides a wealth of technological information that can be used to solve related problems. Manuscripts that address all fields of applications of acoustics ranging from medicine and NDT to the environment and buildings are welcome.
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