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声波驱动的液态金属膨胀

Acoustic Wave-Driven Liquid Metal Expansion.

作者信息

Hyun Youngbin, Lee Jeong-Bong, Chung Sangkug, Kim Daeyoung

机构信息

Department of Mechanical Engineering, Myongji University, Yongin 120-728, Korea.

Department of Electrical Engineering, The University of Texas at Dallas, Richardson, TX 75080, USA.

出版信息

Micromachines (Basel). 2022 Apr 28;13(5):685. doi: 10.3390/mi13050685.

Abstract

In this paper, we report a volume expansion phenomenon of a liquid metal droplet naturally oxidized in an ambient environment by applying an acoustic wave. An oxidized gallium-based liquid metal droplet was placed on a paper towel, and a piezo-actuator was attached underneath it. When a liquid metal droplet was excited by acoustic wave, the volume of liquid metal was expanded due to the inflow of air throughout the oxide crack. The liquid metal without the oxide layer cannot be expanded with an applied acoustic wave. To confirm the effect of the expansion of the oxidized liquid metal droplet, we measured an expansion ratio, which was calculated by comparing the expanded size in the (horizontal), (vertical) axis to the initial size of the liquid metal droplet, using a high-speed camera. For various volumes of the droplet, when we applied various voltages in the range of 58 Vrms with 18.524.5 kHz using the piezo-actuator, we obtained a maximum expansion ratio of 2.4 in the axis and 3.8 in the axis, respectively. In addition, we investigated that the time to reach the maximum expansion in proportion to the volume size of liquid metal differed by five times from 4 s to 20 s, and that the time to maintain the maximum expansion differed from 23 s to 2.5 s, which was inversely proportional to the volume size. We also investigated the expansion ratios depending on the exposure time to the atmosphere. Finally, a circuit containing LED, which can be turned on by expanded liquid metal droplet, was demonstrated.

摘要

在本文中,我们报告了通过施加声波,液态金属微滴在环境中自然氧化时的体积膨胀现象。将一个氧化的镓基液态金属微滴放置在纸巾上,并在其下方附着一个压电致动器。当液态金属微滴受到声波激发时,由于空气通过氧化物裂缝流入,液态金属的体积会膨胀。没有氧化层的液态金属在施加声波时不会膨胀。为了确认氧化液态金属微滴膨胀的效果,我们使用高速相机测量了膨胀率,该膨胀率是通过将在(水平)、(垂直)轴上的膨胀尺寸与液态金属微滴的初始尺寸进行比较来计算的。对于不同体积的微滴,当我们使用压电致动器在58 Vrms的电压范围内、18.524.5 kHz的频率下施加各种电压时,我们分别在轴上获得了最大2.4的膨胀率,在轴上获得了3.8的膨胀率。此外,我们研究发现,达到最大膨胀的时间与液态金属的体积大小成比例,从4秒到20秒相差5倍,而维持最大膨胀的时间从23秒到2.5秒不等,这与体积大小成反比。我们还研究了膨胀率与暴露在大气中的时间的关系。最后,展示了一个包含LED的电路,该电路可以由膨胀的液态金属微滴点亮。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b24/9142988/26d68f993584/micromachines-13-00685-g001.jpg

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