Faculty profile
Vincent Demers
Back to facultyThis profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a École de technologie supérieure directory, so their publications, courses and email address may be missing. Find their university profile.
Research
Latest funding
- $46,000
Fabrication rapide de pièces aérospatiales par impression 3D via l'extrusion de matière polymérique hautement chargée en poudres métalliques.
NSERC · 2024 · Principal investigator
- $66,360
Investigate how unmelted titanium powders can be reused after selective laser melting (SLM) without compromise on part quality and mechanical performances
NSERC · 2023 · Co-investigator
- $246,806
Développement des procédés de pointe et caractérisation avancée des pièces pour l'aérospatiale
NSERC · 2023 · Principal investigator
Fabrication rapide de pièces aérospatiales par impression 3D via l'extrusion de matière polymérique hautement chargée en poudres métalliques.
Principal investigators: Demers, Vincent
Keywords: impression 3d; métallurgie des poudres; polymère hautement chargé en poudre; viscosité; déliantage; frittage; imprimabilité; superalliages
Investigate how unmelted titanium powders can be reused after selective laser melting (SLM) without compromise on part quality and mechanical performances
Principal investigators: Bocher, Philippe P
Keywords: additive manufacturing; defect detection; extreme value statistics; fracture mechanics; microstructure investigation; powder metallurgy; price reduction; reusing manufacturing products; selective laser melting
Développement des procédés de pointe et caractérisation avancée des pièces pour l'aérospatiale
Principal investigators: Demers, Vincent V
Keywords: brasage; caractérisation des poudres; fabrication additive; impression 3d; inspection dimensionnelle; métallurgie des poudres; moulage par injection des poudres; performance mécanique; superalliages
Étude de marché pour un procédé de moulage de poudres métalliques à basse pression
Principal investigators: Demers, Vincent
Development of additive manufacturing process of new particle size distribution powder for structural aeropace application
Principal investigators: Bocher, Philippe P
Keywords: Additive Manufacturing; Extrem Evalue Statistics; Fatigue; Laser Powder Bed Fusion; Mechanical Testing; Porosities; Powder Metallurgy; Process optimisation; Titanium; X-ray tomography
High performance protective coatings on the inner diameter of landing gear components for the replacement of hard chrome: assessment and predictive modeling of fatigue behavior
Principal investigators: Bocher, Philippe P
Keywords: Coating; Data analytics and machine learning; Fatigue; Hexavalent Chromium replacement; HVOF; ID HVOF; Material characterisation; Process optimisation; Thermal spraying; Tungsten-Carbide
Extrusion à sections variables en aluminium : approche expérimentale, développement d'outils de modélisation procédé, et optimisation du materiel
Principal investigators: Bocher, Philippe P
Keywords: Aluminium; Anisotropie; Déformation à chaud; Extrusion; Métallurgie physique; Modélisation numérique; Optimisation procédé; Plasticité cristalline; Propriété mécanique; Texture cristallographique
Effects of Titanium alloy powder characteristics on the quality of parts produced by additive manufacturing and how to control them
Principal investigators: Bocher, Philippe
Effects of initial microstructure and process parameters on fatigue performance of forged aluminum parts_x000d_ _x000d_ _x000d_
Principal investigators: Bocher, Philippe
Évaluation de la capacité de moulage des mélanges à base de titane
Principal investigators: Demers, Vincent
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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