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通过在涂有压电薄膜的铝板上产生的多种声波模式实现的声流体多样性

Acoustofluidic Diversity Achieved by Multiple Modes of Acoustic Waves Generated on Piezoelectric-Film-Coated Aluminum Sheets.

作者信息

Wang Yong, Li Xianbin, Meng Hui, Tao Ran, Qian Jingui, Fu Chen, Luo Jingting, Xie Jin, Fu Yongqing

机构信息

Department of Mechanical Engineering, Hangzhou City University, Hangzhou 310015, China.

The State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310027, China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 28;16(34):45119-45130. doi: 10.1021/acsami.4c06480. Epub 2024 Aug 15.

Abstract

Excitation of multiple acoustic wave modes on a single chip is beneficial to implement diversified acoustofluidic functions. Conventional acoustic wave devices made of bulk LiNbO substrates generally generate few acoustic wave modes once the crystal-cut and electrode pattern are defined, limiting the realization of acoustofluidic diversity. In this paper, we demonstrated diversity of acoustofluidic behaviors using multiple modes of acoustic waves generated on piezoelectric-thin-film-coated aluminum sheets. Multiple acoustic wave modes were excited by varying the ratios between IDT pitch/wavelength and substrate thickness. Through systematic investigation of fluidic actuation behaviors and performances using these acoustic wave modes, we demonstrated fluidic actuation diversities using various acoustic wave modes and showed that the Rayleigh mode, pseudo-Rayleigh mode, and A mode of Lamb wave generally have better fluidic actuation performance than those of Sezawa mode and higher-order modes of Lamb wave, providing guidance for high-performance acoustofluidic actuation platform design. Additionally, we demonstrated diversified particle patterning functions, either on two sides of acoustic wave device or on a glass sheet by coupling acoustic waves into the glass using the gel. The pattern formation mechanisms were investigated through finite element simulations of acoustic pressure fields under different experimental configurations.

摘要

在单个芯片上激发多种声波模式有利于实现多样化的声流功能。由块状铌酸锂衬底制成的传统声波器件,一旦确定了晶体切割和电极图案,通常只能产生很少的声波模式,这限制了声流多样性的实现。在本文中,我们利用在涂有压电薄膜的铝板上产生的多种声波模式,展示了声流行为的多样性。通过改变叉指换能器(IDT)节距/波长与衬底厚度之间的比例来激发多种声波模式。通过系统研究这些声波模式的流体驱动行为和性能,我们展示了使用各种声波模式的流体驱动多样性,并表明瑞利模式、伪瑞利模式和兰姆波的A模式通常比泽瓦模式和兰姆波的高阶模式具有更好的流体驱动性能,为高性能声流驱动平台设计提供了指导。此外,我们通过使用凝胶将声波耦合到玻璃中,在声波器件的两侧或玻璃板上展示了多样化的粒子图案化功能。通过对不同实验配置下声压场的有限元模拟,研究了图案形成机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f52/11367575/d3180bdd60ad/am4c06480_0001.jpg

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