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Parallel plates shear-wave transducers for the characterization of viscous and viscoelastic fluids

机译:平行板剪切波传感器,用于表征粘性和粘弹性流体

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We present a novel sensor design for viscosity measurements using shear-waves, which opens up opportunities for rheological applications in the low kHz range. Two electrodynamic in-plane plate resonators are aligned in parallel and separated by a defined gap filled with the fluid sample. The lower plate is actuated, generating a shear-wave in the viscous or viscoelastic fluid. The response on the upper plate, which is coupled to the lower plate with the viscous fluid in between, is recorded in a frequency range where resonances are observed. The coupling of both resonators increases with viscosity, allowing a, for resonator sensors unprecedented, high viscosity measurement range measured up to 17.1 Pa.s. In this contribution we will introduce the sensor concept, present an analytical model and discuss the results of measurements made with various fluids.
机译:我们提出了一种新颖的传感器设计,用于使用剪切波进行粘度测量,这为低kHz范围内的流变应用提供了机会。两个电动平面内平板谐振器平行排列,并由充满流体样本的确定间隙分开。下板被致动,在粘性或粘弹性流体中产生剪切波。在观察到共振的频率范围内,记录上板与下板之间的粘性流体之间的响应。两个谐振器的耦合都随着粘度的增加而增加,从而为谐振器传感器提供了前所未有的高粘度测量范围,最高可测量到17.1Pa.s。在此贡献中,我们将介绍传感器概念,提供分析模型并讨论使用各种流体进行的测量结果。

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