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利用面内极化声板波选择性检测液体粘度

Selective Detection of Liquid Viscosity Using Acoustic Plate Waves with In-Plane Polarization.

作者信息

Anisimkin Vladimir, Shamsutdinova Elizaveta, Li Peng, Wang Bin, Zhu Feng, Qian Zhenghua, Kuznetsova Iren

机构信息

Kotelnikov Institute of Radio Engineering and Electronics of RAS, 125009 Moscow, Russia.

State Key Laboratory of Mechanics and Control of Mechanical Structures, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.

出版信息

Sensors (Basel). 2022 Apr 1;22(7):2727. doi: 10.3390/s22072727.

Abstract

Using plates of weak piezoeletcric crystal (quartz) loaded with various liquids, it is shown that along with common modes, whose sensitivity towards different liquid parameters comparable with each other, there are some uncommon modes, whose amplitude responses towards viscosity η are much larger than towards temperature T and electric conductivity σ. The search of the modes with the selective properties is accomplished by varying plate thickness h, crystal orientation, wave length λ, and mode order n. It is found that all modes possessing the property are characterized by small surface-normal displacement, avoiding wave radiation into adjacent liquid, large in-plane displacements, enhancing viscous coupling the modes and liquids, and small electro-mechanical constant, reducing electro-acoustic interaction. Basing on the modes, the sensor prototypes with selective operation are developed and tested for η from 1 to 1500 cP, σ from 0 to 1.2 S/m, and t from 0 to 55 °C. Because of operation at ultrasonic frequency (tens MHz) the prototypes have different sensitivities in various η-ranges: 0.3 dB/cP for 1−20 cP, 0.12 dB/cP for 20−100 cP, and 0.015 dB/cP for 100−1500 cP. Viscosity responses of the prototypes become comparable with their electric outputs only for η < 2 cP. Temperature responses are almost zero in air, but when plate is coated with liquid they increase depending on liquid properties, allowing measurements of the temperature dependence of the liquid viscosity.

摘要

通过使用加载了各种液体的弱压电晶体(石英)板,研究表明,除了对不同液体参数的敏感度相互可比的常见模式外,还存在一些不常见模式,其对粘度η的幅度响应远大于对温度T和电导率σ的响应。通过改变板厚h、晶体取向、波长λ和模式阶数n来寻找具有选择性的模式。研究发现,所有具有该特性的模式都具有表面法向位移小、避免向相邻液体辐射波、面内位移大、增强模式与液体之间的粘性耦合以及机电常数小、减少电声相互作用的特点。基于这些模式,开发了具有选择性操作的传感器原型,并在粘度η为1至1500厘泊、电导率σ为0至1.2 S/m、温度t为0至55°C的条件下进行了测试。由于在超声频率(几十兆赫兹)下工作,这些原型在不同的η范围内具有不同的灵敏度:1至20厘泊时为0.3分贝/厘泊,20至100厘泊时为0.12分贝/厘泊,100至1500厘泊时为0.015分贝/厘泊。仅当η<2厘泊时,原型的粘度响应才与其电输出相当。在空气中,温度响应几乎为零,但当板涂有液体时,温度响应会根据液体特性而增加,从而可以测量液体粘度的温度依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b042/9002693/e4326021a78c/sensors-22-02727-g001.jpg

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