The Microcantilever: A Versatile Tool for Measuring the Rheological Properties of Complex Fluids

Author:

Dufour I.1,Maali A.2,Amarouchene Y.2,Ayela C.1,Caillard B.1,Darwiche A.2,Guirardel M.3,Kellay H.2,Lemaire E.1,Mathieu F.4,Pellet C.1,Saya D.4,Youssry M.3,Nicu L.4,Colin A.3

Affiliation:

1. Université de Bordeaux, IMS, 33 400 Talence, France

2. Université de Bordeaux, LOMA, 33 400 Talence, France

3. Rhodia Laboratoire de Futur, Unité mixte Rhodia-CNRS, Université de Bordeaux, 33608 Pessac, France

4. Université de Toulouse, LAAS CNRS, 31077 Toulouse, France

Abstract

Silicon microcantilevers can be used to measure the rheological properties of complex fluids. In this paper, two different methods will be presented. In the first method, the microcantilever is used to measure the hydrodynamic force exerted by a confined fluid on a sphere that is attached to the microcantilever. In the second method, the measurement of the microcantilever's dynamic spectrum is used to extract the hydrodynamic force exerted by the surrounding fluid on the microcantilever. The originality of the proposed methods lies in the fact that not only may the viscosity of the fluid be measured, but also the fluid's viscoelasticity, that is, both viscous and elastic properties, which are key parameters in the case of complex fluids. In both methods, the use of analytical equations permits the fluid's complex shear modulus to be extracted and expressed as a function of shear stress and/or frequency.

Funder

French National Agency

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Instrumentation,Control and Systems Engineering

Reference39 articles.

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