An Electromechanical In Situ Viscosity Measurement Technique for Shear Thickening Fluids

Gökhan Haydarlar, M. Sofuoğlu, Selim Gürgen, M. C. Kuşhan, M. Tekkalmaz
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引用次数: 1

Abstract

This paper presents the feasibility of developing an electromechanical in-situ viscosity measurement technique by analyzing the detectability of small variations in the viscosity of different shear thickening fluids and their different compositions. Shear thickening fluid (STF) is a kind of non-Newtonian fluid showing an increasing viscosity profile under loading. STF is utilized in several applications to take advantage of its tunable rheology. However, process control in different STF applications requires rheological measurements, which cause a costly investment and long-lasting labor. Therefore, one of the most commonly used in-situ structural health monitoring techniques, electromechanical impedance (EMI), was used in this study. In order to actuate the medium electromechanically, a piezoelectric wafer active sensor (PWAS) was used. The variations in the spectral response of PWAS resonator that can be submerged into shear thickening fluid are analyzed by the root mean square deviation, mean absolute percentage deviation and correlation coefficient deviation. According to the results, EMI metrics provide good correlations with the rheological parameters of STF and thereby enabling quick and low-cost rheological control for STF applications such as vibration dampers or stiffness control systems.
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剪切增稠流体的机电原位粘度测量技术
本文通过分析不同剪切增稠流体及其不同成分粘度微小变化的可探测性,提出了开发一种机电原位粘度测量技术的可行性。剪切增稠流体(STF)是非牛顿流体,在载荷作用下粘度呈递增趋势。STF可用于多种应用,以利用其可调的流变性。然而,在不同的STF应用中,过程控制需要流变测量,这会导致昂贵的投资和长期的劳动。因此,本研究采用了最常用的原位结构健康监测技术之一——机电阻抗(EMI)。为了实现介质的电致动,采用了压电片主动传感器(PWAS)。通过均方根偏差、平均绝对百分比偏差和相关系数偏差分析了可浸入剪切增稠流体的PWAS谐振器的光谱响应变化。根据研究结果,EMI指标与STF的流变参数具有良好的相关性,从而可以对STF应用(如减振器或刚度控制系统)进行快速、低成本的流变控制。
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