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Viscosity sensor utilizing a piezoelectric thickness shear sandwich resonator

机译:利用压电厚度剪切夹层谐振器的粘度传感器

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This paper describes a novel quartz crystal sensor for measurement of the density-viscosity product of Newtonian liquids. The sensor element consists of two piano-convex AT-cut quartz crystals vibrating in a thickness-shear mode with the liquid sample in between. This special set-up allows suppression of disturbing resonances in the liquid layer. Such resonances are generated in the common single-plate arrangements due to compressional waves caused by spurious out-of-plane displacements of the shear vibrating finite plate. The primary measurands of the sensor are the fundamental resonance frequency and the associated resonance Q-value, which are influenced by the viscously entrained liquid contacting the quartz surface. The sensor allows the measurement of samples with viscosities from almost zero (air!) up to 200 cP with a sample volume of 130 /spl mu/l.
机译:本文介绍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。传感器元件由两个钢琴凸的AT切割石英晶体组成,它们在厚度剪切模式下振动,中间有液体样品。这种特殊的设置可以抑制液层中的干扰共振。由于由剪切振动有限板的虚假平面外位移引起的压缩波,在普通的单板结构中会产生这样的共振。传感器的主要指标是基本谐振频率和相关的谐振Q值,这些值受与石英表面接触的粘性夹带液体的影响。该传感器可以测量粘度从几乎零(空气!)到200 cP的样品,样品体积为130 / spl mu / l。

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