Faculty profile
Carl Blais
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Research
Latest papers
Tribo-Mechanical Properties of HVOF Deposited Fe₃Al Coatings Reinforced with TiB₂ Particles for Wear-Resistant Applications.
Materials (Basel, Switzerland) · 2016
Latest funding
- $131,000
Titanium recyclability and valorization experience
NSERC · 2024 · Principal investigator
- $372,852
Holistic Innovation in Additive Manufacturing 2.0 (HI-AM 2.0): Capitalizing on Prior Achievements and Exploring New Frontiers in Powder Bed Fusion and Binder Jet AM Processes
NSERC · 2024 · Co-investigator
- $80,000
New bioabsorbable metallic biomaterials and competitive fabrication processes for Global Health, including neurosurgery
NSERC · 2023 · Co-investigator
1 publications.
Tribo-Mechanical Properties of HVOF Deposited Fe₃Al Coatings Reinforced with TiB₂ Particles for Wear-Resistant Applications.
Amiriyan M, Blais C, Savoie S, Schulz R, Gariépy M, Alamdari H
Titanium recyclability and valorization experience
Principal investigators: Blais, Carl C
Keywords: additive manufacturing; atomization; automated sorting of scrap; end of life components; life cycle analysis; plasma spheroidization; purification of recycled ti-alloys; recycling; surface contamination removal; titanium alloys
Holistic Innovation in Additive Manufacturing 2.0 (HI-AM 2.0): Capitalizing on Prior Achievements and Exploring New Frontiers in Powder Bed Fusion and Binder Jet AM Processes
Principal investigators: Toyserkani, Ehsan E
Keywords: additive manufacturing; binder jetting; control; design for additive manufacturing; in-situ monitoring; metal 3d printing; modeling and simulation; powder bed fusion; quality assurance
New bioabsorbable metallic biomaterials and competitive fabrication processes for Global Health, including neurosurgery
Principal investigators: Mantovani, Diego D
Keywords: alloys; biocompatibility; biomaterials; fabrication; materials science and technology; mechanical properties; medical devices; metal 3d-printing; molecular additive manufacture; thermomechanical treatment
Development of master alloys for improving the sintering response and mechanical properties of high performance steel components produced by powder metallurgy and additive manufacturing
Principal investigators: Blais, Carl
Keywords: Additive Manufacturing; Atomization; Binder-Jetting; Densification; Ferrous Master Alloys; Improved Mechanical Properties; Liquid Phase Diffusion; Liquid Phase Sintering; Mass Transport; Powder Metallurgy
Characterization of novel aluminium powders for the development of components using the powder metallurgy process.
Principal investigators: Blais, Carl
Development and optimization of friction material used in wind turbines and heavy-duty industrial brake systems
Principal investigators: Blais, Carl
Improving the machining behaviour of powder metallurgy steels through development and optimized utilization of machinability enhancing additives
Principal investigators: Blais, Carl
Appui au fonctionnement et à l'entretien du Centre de Caractérisation Microscopique des Matériaux, le (CM)²
Principal investigators: LEspérance, Gilles
Optimization of microstructure and coatings of circular blades to improve sawing performance of the wood manufacturing sector
Principal investigators: Blais, Carl
NSERC Network for Holistic Innovation in Additive Manufacturing (HI-AM)
Principal investigators: Toyserkani, Ehsan E
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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