振动微悬臂用作粘度计和微流变仪

N. Belmiloud, I. Dufour, L. Nicu, A. Colin, J. Pistré
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引用次数: 24

摘要

本文的目的是证明振动微悬臂梁可以用于(1)测量牛顿流体在很大粘度范围内的粘度,(2)确定麦克斯韦流体的粘弹性特性。为了扩大更经典的微悬臂粘度计的粘度测量范围,研究了振动微悬臂的频谱,而不是将重点局限于谐振频率和品质因子测量的变化。实验结果证明,即使没有共振现象发生,粘度测量也是可能的。同样的方法也可用于测定复杂流体的粘弹性。为此,开发了一种新的分析模型,初步测量结果对芯片微流变仪的开发具有鼓舞作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vibrating Microcantilever used as Viscometer and Microrheometer
The aim of this paper is to demonstrate that vibrating microcantilevers can be used (1) to measure the viscosity of a Newtonian fluid for a wide range of viscosities and (2) to determine the viscoelastic properties of a Maxwellian fluid. To widen the viscosity measurement range of more classical microcantilever-based viscometers, the frequency spectrum of a vibrating microcantilever is studied instead of restricting the focus to shifts in resonant frequency and quality factor measurements. Results of experiments are presented to validate that, even if no resonant phenomenon occurs, viscosity measurements are possible. The same approach can be used for the determination of viscoelastic properties of complex fluids. To this end, a new analytical model has been developed and the preliminary measurements are encouraging for the development of a microrheometer on a chip.
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