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Study on Liquid QCM Sensor Design and its Response Model

机译:液体QCM传感器设计及其响应模型研究

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We use quartz crystal material from a physical point of constitutive equations derived in detail combined with the boundary conditions of the liquid Kanasawa QCM response model and Martin correction BVD equivalent circuit model; then apply transmission line theory and the theory of Acoustic impedance load, the research results can be useful as a QCM-D model, response model and Martin mode, then in-depth analysis of the liquid phase conditions, factors affecting the QCM frequency change, we propose a new method for measuring the density of the unknown liquid viscosity supplement. The main purpose of this chapter is to illustrate the viscous liquid medium under contact conditions, based on transmission line theory and the theory of load Acoustic impedance method compared to the classical method is simple, accurate, and effective.
机译:我们使用详细衍生的本构方程的物理点中的石英晶材料与液体Kanasawa QCM响应模型和Martin校正BVD等效电路模型的边界条件相结合;然后应用传输线理论和声学阻抗负荷理论,研究结果可用作QCM-D型号,响应模型和马丁模式,然后深入分析液相条件,影响QCM频率变化的因素,我们提出了一种测量未知液体粘度补充密度的新方法。本章的主要目的是为了说明在接触条件下的粘性液体介质,基于传输线理论和负载声阻抗方法与经典方法相比,简单,准确,有效。

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