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Method of the viscosity measurement by means of the vibrating micro-/nano-mechanical resonators
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Method of the viscosity measurement by means of the vibrating micro-/nano-mechanical resonators

Alexander I. Fedorchenko, Ivo StachivWei-Chih Wang
Flow Measurement and Instrumentation, 卷.32, 頁碼.84-89
08/2013

摘要

Atomic force microscopy Dimensionless analysis Microcantilever Microviscometer Nanowire Resonance Viscometer Viscosity extraction Modeling and Simulation Instrumentation Computer Science Applications Electrical and Electronic Engineering
Atomic force microscopes, micro-/nano-mechanical resonators and nanowires or carbon nanotube can detect even a small change of properties of fluids and therefore they are often considered to be the prospective ultrasensitive micro/nano viscometers. However, due to the complicated physics behind such devices, the interpretation of experimental data including the viscosity extraction is mostly performed based on some approximations or data fittings. In this paper, the complete analysis of the vibrating cylindrical micro-/nano-cantilever submerged in a viscous fluid is presented. Based on the obtained results a simple way of the viscosity extraction from the maximum vibrational amplitude (MVA), the bandwidth and the resonance frequency shift, is proposed. The simple formulas for the achievable accuracy of the viscosity sensing are given. These results can be used in future development of the ultrasensitive micro/nano viscometers integrated on micro systems or flow meters. © 2013 Elsevier Ltd.

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