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使用具有纵向电场的谐振器测定液体的电学和力学性质。

Determination of Electrical and Mechanical Properties of Liquids Using a Resonator with a Longitudinal Electric Field.

作者信息

Semyonov Alexander, Zaitsev Boris, Teplykh Andrey, Borodina Irina

机构信息

Kotel'nikov Institute of Radio Engineering and Electronics of RAS, Saratov Branch, 410019 Saratov, Russia.

出版信息

Sensors (Basel). 2024 Jan 25;24(3):793. doi: 10.3390/s24030793.

Abstract

The possibility of determining the elastic modules, viscosity coefficients, dielectric constant and electrical conductivity of a viscous conducting liquid using a piezoelectric resonator with a longitudinal electric field is shown. For the research, we chose a piezoelectric resonator made on an AT-cut quartz plate with round electrodes, operating with a shear acoustic mode at a frequency of about 4.4 MHz. The resonator was fixed to the bottom of a 30 mL liquid container. The samples of a mixture of glycerol and water with different viscosity and conductivity were used as test liquids. First, the frequency dependences of the real and imaginary parts of the electrical impedance of a free resonator were measured and, using the Mason electromechanical circuit, the elastic module, viscosity coefficient, piezoelectric constant and dielectric constant of the resonator material (quartz) were determined. Then, the container was filled with the test sample of a liquid mixture so that the resonator was completely covered with liquid, and the measurement of the frequency dependences of the real and imaginary parts of the electrical impedance of the loaded resonator was repeated. The dependences of the frequency of parallel and series resonances, as well as the maximum values of the electrical impedance and admittance on the conductivity of liquids for various viscosity values, were plotted. It was shown that these dependences can be used to unambiguously determine the viscosity and conductivity of the test liquid. Next, by fitting the theoretical frequency dependences of the real and imaginary parts of the electrical impedance of the resonator loaded with the liquid under study to the experimental dependences, the elastic module of the liquid and its dielectric constant were determined.

摘要

展示了使用具有纵向电场的压电谐振器来测定粘性导电液体的弹性模量、粘度系数、介电常数和电导率的可能性。为了进行这项研究,我们选择了一个在AT切割石英板上制作的、带有圆形电极、以约4.4 MHz频率的剪切声学模式工作的压电谐振器。该谐振器固定在一个30 mL液体容器的底部。使用具有不同粘度和电导率的甘油和水的混合物样本作为测试液体。首先,测量自由谐振器电阻抗实部和虚部的频率依赖性,并利用梅森机电电路确定谐振器材料(石英)的弹性模量、粘度系数、压电常数和介电常数。然后,将液体混合物的测试样品填充到容器中,使谐振器完全被液体覆盖,并重复测量加载谐振器电阻抗实部和虚部的频率依赖性。绘制了并联和串联谐振频率以及各种粘度值下液体电导率对应的电阻抗和导纳最大值的依赖性曲线。结果表明,这些依赖性可用于明确测定测试液体的粘度和电导率。接下来,通过将加载有待研究液体的谐振器电阻抗实部和虚部的理论频率依赖性与实验依赖性进行拟合,确定了液体的弹性模量及其介电常数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1755/10856845/1d86bea41081/sensors-24-00793-g001.jpg

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