High precision tuning fork sensor for liquid property measurements

L. Matsiev, J. Bennett, O. Kolosov
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引用次数: 19

Abstract

Application of piezoelectric flexural mechanical resonators such as tuning forks to accurate measurements of liquid physical properties is discussed. It was shown earlier that liquid properties such as viscosity, density and dielectric constant can be obtained by measuring the resonator AC impedance within certain frequency range and fitting it to the resonator equivalent circuit model (1). Error sources for the liquid property measurements and their influence on the measured value are investigated. It is shown experimentally that the reproducibility of the viscosity and density measurements using this technique can meet and often exceed the one delivered by the well established analytical instrumentation. It is also demonstrated here that better performance is resulting from the use of the whole impedance curve over a frequency range, which produces better statistics and natural averaging of the noise.
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用于液体特性测量的高精度音叉传感器
讨论了音叉等压电弯曲机械谐振器在液体物理性质精确测量中的应用。前面已经证明,通过测量谐振器交流阻抗在一定频率范围内,并将其拟合到谐振器等效电路模型中,可以得到液体的粘度、密度和介电常数等特性(1)。研究了液体特性测量的误差来源及其对测量值的影响。实验表明,使用该技术测量的粘度和密度的重现性可以满足并经常超过由成熟的分析仪器提供的重现性。这里还证明,在一个频率范围内使用整个阻抗曲线会产生更好的性能,从而产生更好的统计数据和噪声的自然平均。
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