Faculty profile
Alexander Bardelcik
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Research
Latest papers
The Energy Absorption Behavior of 3D-Printed Polymeric Octet-Truss Lattice Structures of Varying Strut Length and Radius.
Polymers · 2023 · senior author
Evaluation of the performance of an endoscopic 3-mm electrothermal bipolar vessel sealing device intended for single use after multiple use-and-resterilization cycles.
Veterinary surgery : VS · 2020
Latest funding
- $73,633
Damage evolution in precipitation strengthened HSLA steels
NSERC · 2024 · Principal investigator
- $114,947
The effect of hot rolling process parameters on the microstructure, toughness and damage evolution of High Strength Low Alloy (HSLA) steels
NSERC · 2021 · Principal investigator
- $390,000
Development of a Hot Stamping Process Model for a 2,000 MPa Ultra High Strength Steel
NSERC · 2018 · Co-investigator
2 publications.
The Energy Absorption Behavior of 3D-Printed Polymeric Octet-Truss Lattice Structures of Varying Strut Length and Radius.
Bolan M, Dean M, Bardelcik A
Evaluation of the performance of an endoscopic 3-mm electrothermal bipolar vessel sealing device intended for single use after multiple use-and-resterilization cycles.
Quitzan JG, Singh A, Beaufrere H, Valverde A, Lillie B, Salahshoor M, Bardelcik A, Saleh TM
Damage evolution in precipitation strengthened HSLA steels
Principal investigators: Bardelcik, Alexander A
Keywords: damage evolution; finite elements; fracture characterization; high strength low alloy (hsla); in-situ mechanical testing; precipitation strengthening; representative volume elements (rve); stress triaxiality
The effect of hot rolling process parameters on the microstructure, toughness and damage evolution of High Strength Low Alloy (HSLA) steels
Principal investigators: Bardelcik, Alexander AB
Keywords: Damage Evolution; Finite Element Modelling; Fracture Testing; High Strength Low Alloy Steel; in-situ FE-SEM testing; Microstructural Characterization; Representative Volume Elements (RVE); Strain Partitioning
Development of a Hot Stamping Process Model for a 2,000 MPa Ultra High Strength Steel
Principal investigators: Worswick, Michael
Weld Seam Optimization of Roll Formed TRIP690********
Principal investigators: Bardelcik, Alexander
A Microstructural and Damage Investigation into the Low Temperature Drop Weight Tear Test (DWTT) Behavior of an HSLA Steel
Principal investigators: Bardelcik, Alexander
Investigation of the Micro-Mechanical Phenomena Operative during Elevated Temperature Forming and in the As-Received (and As-Formed) Condition of Novel Automotive Light Weighting Metals
Principal investigators: Bardelcik, Alexander
Keywords: Damage (Void) Processes; Elevated Temperature Forming; FE-SEM Microscopy; Finite Element Modelling; High Strain Rate Testing; In-Situ Mechanical Testing; Lightweighting Automotive Metals; Multi-Phase Metals; Plasticity (Deformation); Solid-State Phase Transformations
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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