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Viscosity sensor based on a symmetric dual quartz thickness shear resonator

机译:基于对称双石英厚度剪切共振器的粘度传感器

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摘要

The paper describes a novel quartz crystal sensor for the measurement of the density-viscosity product of Newtonian liquids. The sensor element consists of two circular quartz crystal plates with an air-gap in between and the liquid sample in contact with the outer plate surfaces. Plano-convex AT-cut quartz crystals arranged in mirror symmetric crystallographic orientation and vibrating in an even-symmetric thickness-shear fundamental mode at 2.77 MHz are utilized. The two outer plane sides of the crystals are fully covered by gold electrodes, which are both connected to ground potential. This special mirror symmetric set-up allows the compensation of spurious displacements in the circular clamping zones of the two crystals. The measurement values of the sensor are the fundamental resonance frequency f and the associated resonance Q-value, which are analytically dependent on the density-viscosity product of the liquid in contact with the sensing surfaces. In contrast to an earlier report about a sandwich resonator sensor, which entrapped the liquid sample between two quartz plates, the immersible sensor presented here is not restricted to low viscosity samples. The sensor covers a viscosity range from almost zero (air!) up to 2000 Pa.s, and is not restricted to electrically insulating liquids.
机译:本文描述了一种新型的石英传感器,用于测量牛顿液体的密度-粘度乘积。传感器元件由两个圆形的石英晶体板组成,它们之间有一个气隙,液体样品与板的外表面接触。利用以凸面对称晶体取向排列并在2.77 MHz处以均匀对称的厚度剪切基本模式振动的平凸AT切割石英晶体。晶体的两个外平面侧被金电极完全覆盖,金电极均连接到地电位。这种特殊的镜面对称设置可以补偿两个晶体圆形夹持区域中的虚假位移。传感器的测量值是基本共振频率f和相关的共振Q值,它们在分析上取决于与传感表面接触的液体的密度-粘度乘积。与先前关于夹层谐振器传感器的报告将液体样品截留在两个石英板之间相反,此处介绍的可浸入传感器不限于低粘度样品。该传感器的粘度范围几乎从零(空气!)到2000 Pa.s,并且不限于电绝缘液体。

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