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首页> 外文期刊>Sensors and Actuators, A. Physical >Fluid property investigation by impedance characterization of quartz crystal resonators. Part I: Methodology, crystal screening, and Newtonian fluids
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Fluid property investigation by impedance characterization of quartz crystal resonators. Part I: Methodology, crystal screening, and Newtonian fluids

机译:通过石英晶体谐振器的阻抗特性研究流体性质。第一部分:方法论,晶体筛选和牛顿流体

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In the first of this two-part communication, we present a methodology for the application of thickness shear mode (TSM) quartz crystal resonators (QCR) in fluid property investigation. To this end, we outline a protocol for the preparation of crystal surfaces for fluid contact and establish a methodology for the pre-screening of quartz crystals for application in fluid property investigation. We also present a data fitting algorithm which enables the conversion of raw impedance data into equivalent circuit parameters. Subsequently, we report on our study of a series of Newtonian fluids (2-propanol/water solutions) by frequency response analysis of the fluid-contacted TSM QCR. The results are analyzed in comparison to theoretical predictions presented in an earlier publication. The results show good agreement between the theory and experimentally derived equivalent circuit parameters. The influence of fluid elasticity on the impedance response of liquid-contacted thickness-shear mode (TSM) quartz crystal resonators (QCR) is investigated in the second part. Model predictions are compared to experimental results on a series of a TSM QCR contacted with poly(dimethylsiloxane) fractions. The findings show that with appropriate instrumentation and models to interpret results, TSM QCR can be rapid and effective tools in viscoelastic fluid property investigation.
机译:在这一分为两部分的交流中,我们提出了一种在流体特性研究中应用厚度剪切模式(TSM)石英晶体谐振器(QCR)的方法。为此,我们概述了制备用于流体接触的晶体表面的协议,并建立了一种预筛选用于流体性质研究的石英晶体的方法。我们还提出了一种数据拟合算法,该算法能够将原始阻抗数据转换为等效电路参数。随后,我们通过与流体接触的TSM QCR的频率响应分析报告了我们对一系列牛顿流体(2-丙醇/水溶液)的研究。与早期出版物中提供的理论预测相比,对结果进行了分析。结果表明,该理论与实验得出的等效电路参数之间具有很好的一致性。在第二部分中研究了流体弹性对液体接触厚度剪切模式(TSM)石英晶体谐振器(QCR)的阻抗响应的影响。将模型预测结果与一系列与聚(二甲基硅氧烷)馏分接触的TSM QCR的实验结果进行比较。研究结果表明,通过适当的仪器和模型来解释结果,TSM QCR可以作为粘弹性流体性质研究的快速有效工具。

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