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(microstructure and properties of aluminum alloys and steels), • knowledge and experience in strength of materials (analysis of material behavior under plastic deformation conditions), • ability to conduct teaching
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the time the employment decision is made Strong written and verbal communication skills in English Experience in metal additive manufacturing (PBF-LB), microstructure characterization with focus on Ni-based
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réponses macroscopiques. Le travail s'inscrira dans une approche multi-échelle et multi-physique intégrant, au sein de formulations cohérentes, les effets de la microstructure, des interactions fluide
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low-carbon footprint cements and their durability. Perform experimental tests (including freeze-thaw cycles), analyze results and interpret data. Carry out the microstructural characterization
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collaboration with Special Melted Products (https://specialmeltedproducts.com/) using the unique Royce metals processing capabilities in Sheffield (https://sheffield.ac.uk/royce-institute), that range from alloy
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(L-PBF) process for MMC using innovative powders, including those produced via thermal plasma from recycled materials. Activities include morphological, microstructural and mechanical characterization
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framework for the modeling of polymer nanocomposites under nonlinear elasticity at large deformations. The microstructure will be explicitly described at the microscopic scale through nonlinear micromechanics
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spray-drying and freeze-drying, linking molecular/colloidal interactions in the feed formulation to process-driven microstructure, and ultimately to stability and release kinetics. The work will deliver
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Institut de Recherche en Génie Civil et Mécanique (GeM) | Saint Nazaire, Pays de la Loire | France | 30 days ago
plateformes expérimentales de pointe. Les candidatures doivent être déposées sur la plateforme Amethis (https://amethis.doctorat.org ). This PhD thesis lies at the interface between materials mechanics
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microstructural characterization, and opportunities focused on acoustic nondestructive evaluation of existing structures. We apply fracture mechanics and materials science principles to model data, furthering