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Viscosity and Rheological Properties of Graphene Nanopowders Nanofluids

Article dans une revue avec comité de lecture
Auteur
BAKAK, Abderrahim
302207 Université Cadi Ayyad [Marrakech] [UCA]
LOTFI, Mohamed
302207 Université Cadi Ayyad [Marrakech] [UCA]
HEYD, Rodolphe
211916 Laboratoire Angevin de Mécanique, Procédés et InnovAtion [LAMPA]
ccAMMAR, Amine
211916 Laboratoire Angevin de Mécanique, Procédés et InnovAtion [LAMPA]
KOUMINA, Abdelaziz
302207 Université Cadi Ayyad [Marrakech] [UCA]

URI
http://hdl.handle.net/10985/23267
DOI
10.3390/e23080979
Date
2021-07-29
Journal
Entropy

Résumé

The dynamic viscosity and rheological properties of two different non-aqueous graphene nano-plates-based nanofluids are experimentally investigated in this paper, focusing on the effects of solid volume fraction and shear rate. For each nanofluid, four solid volume fractions have been considered ranging from 0.1% to 1%. The rheological characterization of the suspensions was performed at 20°C, with shear rates ranging from 10⁻¹ s⁻¹ to 10³s⁻¹, using a cone-plate rheometer. The Carreau–Yasuda model has been successfully applied to fit most of the rheological measurements. Although it is very common to observe an increase of the viscosity with the solid volume fraction, we still found here that the addition of nanoparticles produces lubrication effects in some cases. Such a result could be very helpful in the domain of heat extraction applications. The dependence of dynamic viscosity with graphene volume fraction was analyzed using the model of Vallejo et al.

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Documents liés

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  • Thermal Conductivity of Suspension of Aggregating Nanometric Rods 
    Article dans une revue avec comité de lecture
    ccAMMAR, Amine; ccCHINESTA SORIA, Francisco; HEYD, Rodolphe (MDPI, 2016)
    Enhancing thermal conductivity of simple fluids is of major interest in numerous applicative systems. One possibility of enhancing thermal properties consists of dispersing small conductive particles inside. However, in ...
  • Viscosity of graphene in lubricating oil, ethylene glycol and glycerol 
    Article dans une revue avec comité de lecture
    BAO, Jianhong; HEYD, Rodolphe; ccREGNIER, Gilles; ccAMMAR, Amine; ccPEIXINHO, Jorge (Springer Science and Business Media LLC, 2023-09)
    This paper reports the results of an experimental investigation of graphene particle suspensions in lubricating oil, ethylene glycol and glycerol-based fluids. Graphene particles of different specific surface area show ...
  • Drying colloidal systems: Laboratory models for a wide range of applications 
    Article dans une revue avec comité de lecture
    BACCHIN, Patrice; BRUTIN, David; DAVAILLE, Anne; DI GIUSEPPE, Erika; CHEN, Xiao Dong; GERGIANAKIS, Ioannis; GIORGIUTTI-DAUPHINÉ, Frédérique; GOEHRING, Lucas; HALLEZ, Yannick; HEYD, Rodolphe; JEANTET, Romain; LE FLOCH-FOUÉRÉ, Cécile; MEIRELES, Martine; MITTELSTAEDT, Eric; NICLOUX, Céline; PAUCHARD, Ludovic; SABOUNGI, Marie-Louise (EDP Sciences: EPJ, 2018)
    The drying of complex fluids provides a powerful insight into phenomena that take place on time and length scales not normally accessible. An important feature of complex fluids, colloidal dispersions and polymer solutions ...
  • On the Model Order Reduction of Confined Plasticity 
    Communication avec acte
    NASRI, Mohamed Aziz; ccAMMAR, Amine; ccCHINESTA SORIA, Francisco; ROBERT, Camille; ccEL AREM, Saber; ccMOREL, Franck (Springer, 2016)
    Forming processes usually involve irreversible plastic transformations. The calculation in that case becomes cumbersome when large parts and processes are considered. Recently Model Order Reduction techniques ...
  • Proper Generalized Decomposition (PGD) for numerical calculation of polycrystalline aggregates under cyclic loading 
    Communication sans acte
    NASRI, Mohamed Aziz; ROBERT, Camille; ccMOREL, Franck; ccEL AREM, Saber; ccAMMAR, Amine (2015)
    none

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