M.Sc. Justice Olatunbosun

Curriculum Vitae
Forschung
Modellierung und Analyse der prozessbedingten Eigenschaften durch
Laserpulverauftragschweißen additiv gefertigter Strukturen (DFG Projekt 504955789).
Forschungsinteressen
- Additive manufacturing process simulation: Direct energy (laser beam) deposition
- Particle Finite Element Method (PFEM)
- Remeshing Technologies
Publications
2026
J. Olatunbosun, M. Schewe, T. Bartel, A. Menzel:
A three-dimensional thermomechanical Particle Finite Element framework — Towards the simulation of laser directed energy deposition
Computer Methods in Applied Mechanics and Engineering, 2026,
DOI: 10.1016/j.finel.2023.104105, Open Access.
2026
J. Olatunbosun, M. Schewe, T. Bartel, A. Menzel:
A Metal 3D Printing Simulation Framework Based on the Particle Finite Element Method
17th World Congress on Computational Mechanics (WCCM ), 10th European Congress on Computational Methods in Applied Sciences and Engineering (ECCOMAS ), Munich, Deutschland, 19.07.2026 - 24.07.2026
J. Olatunbosun, M. Schewe, T. Bartel, A. Menzel:
Modelling Laser Metal Deposition with the Particle Finite Element Method and a large strain temperature-dependent viscoelastic material model
96th GAMM Annual Meeting, Stuttgart, Deutschland, 16.03.2026 - 240.03.2026
2025
J. Olatunbosun, M. Schewe, T. Bartel, H.J Dardaei, Y.P Korkolis, A.E Tekkaya, A. Menzel:
Particle Finite Element Remeshing for Modelling Laser Metal Deposition
11th GACM Colloquium on Computational Mechanics, Braunschweig, Deutschland, 21.09.2025 - 24.09.2025
