Multi-Parameter Characterization of Liquid-to-Ice Phase Transition Using Bulk Acoustic Waves.

IF 3.4 3区 综合性期刊 Q2 CHEMISTRY, ANALYTICAL Sensors Pub Date : 2024-06-20 DOI:10.3390/s24124010
Andrey Smirnov, Vladimir Anisimkin, Natalia Voronova, Vadim Kashin, Iren Kuznetsova
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Abstract

The detection of the liquid-to-ice transition is an important challenge for many applications. In this paper, a method for multi-parameter characterization of the liquid-to-ice phase transition is proposed and tested. The method is based on the fundamental properties of bulk acoustic waves (BAWs). BAWs with shear vertical (SV) or shear horizontal (SH) polarization cannot propagate in liquids, only in solids such as ice. BAWs with longitudinal (L) polarization, however, can propagate in both liquids and solids, but with different velocities and attenuations. Velocities and attenuations for L-BAWs and SV-BAWs are measured in ice using parameters such as time delay and wave amplitude at a frequency range of 1-37 MHz. Based on these measurements, relevant parameters for Rayleigh surface acoustic waves and Poisson's modulus for ice are determined. The homogeneity of the ice sample is also detected along its length. A dual sensor has been developed and tested to analyze two-phase transitions in two liquids simultaneously. Distilled water and a 0.9% solution of NaCl in water were used as examples.

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利用体声波对液体到冰的相变进行多参数表征
检测液相到冰相的转变是许多应用领域面临的一项重要挑战。本文提出并测试了一种多参数表征液冰相变的方法。该方法基于体声波(BAW)的基本特性。具有剪切垂直(SV)或剪切水平(SH)极化的声波不能在液体中传播,只能在冰等固体中传播。然而,具有纵向(L)极化的声波可以在液体和固体中传播,但传播速度和衰减不同。在 1-37 兆赫的频率范围内,使用时间延迟和波幅等参数测量了 L-BAW 和 SV-BAW 在冰中的速度和衰减。根据这些测量结果,确定了雷利表面声波的相关参数和冰的泊松模量。此外,还能沿长度方向检测冰样的均匀性。开发和测试的双传感器可同时分析两种液体中的两相转变。以蒸馏水和 0.9% 的氯化钠水溶液为例。
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来源期刊
Sensors
Sensors 工程技术-电化学
CiteScore
7.30
自引率
12.80%
发文量
8430
审稿时长
1.7 months
期刊介绍: Sensors (ISSN 1424-8220) provides an advanced forum for the science and technology of sensors and biosensors. It publishes reviews (including comprehensive reviews on the complete sensors products), regular research papers and short notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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