Projet de thèse en Sciences pour l'Ingénieur
Sous la direction de Yannick Bailly, Thierry Barriere et de Stefan Giurgea.
Thèses en préparation à Bourgogne Franche-Comté , dans le cadre de SPIM - Sciences Physiques pour l'Ingénieur et Microtechniques , en partenariat avec FEMTO-ST Franche Comté Electronique Mécanique Thermique et Optique - Sciences et Technologies (laboratoire) et de Département Énergie (equipe de recherche) depuis le 23-10-2018 .
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Multi-physics Approach to The Optimal Design of Innovative MagnetoCaloric (MC) Regenerators.
The COMPOMAG project is focused on the manufacturing of thermoplastics highly loaded in MagnetoCaloric (MC) powder in order to obtain MC composite regenerators with specific microstructure on its surface. This structuring at microscopic level (i.e. geometric details at the surface) is required to facilitate the stacking up of the MC regenerator and to enhance the heat transfer and mixing in the fluid boundary layer simultaneously. Moreover, in order to improve dimensional accuracy, the use of finer granulometries of the powders is also required to explore and push the current limits of forming processes and consequently to increase the MC properties.