A simple microstructural viscoelastic model for flowing foams
Article dans une revue avec comité de lecture
Auteur
KEUNINGS, Roland
92863 Université Catholique de Louvain = Catholic University of Louvain [UCL]
197411 Institute of Information and Communication Technologies, Electronics and Applied Mathematics [ICTEAM]
92863 Université Catholique de Louvain = Catholic University of Louvain [UCL]
197411 Institute of Information and Communication Technologies, Electronics and Applied Mathematics [ICTEAM]
Date
2018Journal
International Journal of Material FormingRésumé
The numerical modelling of forming processes involving the flow of foams requires taking into account the different problem scales. Thus, in industrial applications a macroscopic approach is suitable, whereas the macroscopic flow parameters depend on the cellular structure: cell size, shape, orientation, etc. Moreover, the shape and orientation of the cells are induced by the flow. A fully microscopic description remains useful to understand the foam behaviour and the topological changes induced by the cell elongation or distortion, however, from an industrial point of view, microscopic simulations remain challenging to address practical applications involving flows in complex 3D geometries. In this paper, we propose a viscoelastic flow model where the foam microstructure is represented from suitable microstructure descriptors whose evolution is governed by the macroscopic flow kinematics.
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Article dans une revue avec comité de lectureSCHEUER, Adrien; KEUNINGS, Roland; ABISSET-CHAVANNE, Emmanuelle; CHINESTA SORIA, Francisco (Elsevier Masson, 2018)The properties of reinforced polymers strongly depend on the microstructural state, that is, the orientation state of the fibres suspended in the polymeric matrix, induced by the forming process. Understanding flow-induced ...
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Article dans une revue avec comité de lectureSCHEUER, Adrien; CUETO, Elías; KEUNINGS, Roland; ADVANI, Suresh G.; ABISSET-CHAVANNE, Emmanuelle; AMMAR, Amine; CHINESTA SORIA, Francisco (Tech Science Press, 2018)Describing the orientation state of the particles is often critical in fibre suspension applications. Macroscopic descriptors, the so-called second-order orientation tensor (or moment) leading the way, are often preferred ...
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Article dans une revue avec comité de lectureSCHEUER, Adrien; GRÉGOIRE, Guillaume; KEUNINGS, Roland; ABISSET-CHAVANNE, Emmanuelle; CHINESTA SORIA, Francisco (ELSEVIER, 2020)Simulations of flows containing non-spherical particles (fibres or ellipsoids) rely on the knowledge of the equation governing the particle motion in the flow. Most models used nowadays are based on the pioneering work of ...
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Article dans une revue avec comité de lecturePEREZ, Marta; SCHEUER, Adrien; KEUNINGS, Roland; ABISSET-CHAVANNE, Emmanuelle; AMMAR, Amine; CHINESTA SORIA, Francisco (Springer Verlag, 2019)When addressing the flow of concentrated suspensions composed of rods, dense clusters are observed. Thus, the adequate modelling and simulation of such a flow requires addressing the kinematics of these dense clusters and ...
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Article dans une revue avec comité de lectureIBAÑEZ, Ruben; HUERTA, Antonio; CUETO, Elías G.; ABISSET-CHAVANNE, Emmanuelle; CHINESTA SORIA, Francisco (Wiley, 2019)It is well known that model order reduction techniques that project the solution of the problem at hand onto a low-dimensional subspace present difficulties when this solution lies on a nonlinear manifold. To overcome these ...