Aller au contenu principal

Public Thesis Defense of Ali NABIZADA - IMMC

sst |

sst
27 May 2026 , modifié le 20 April 2026

Microstructural and Micromechanical Characterization of Hydrogen Interaction with Additively Manufactured 316L Stainless Steels

Wednesday May 27th, 2026 - 4pm - Auditorium 1, iGent, 1st floor, Technologiepark Zwijnaarde 126, 9052 Zwijnaarde

Hydrogen is a key energy carrier for a sustainable future, with applications in transport, storage, and industry. However, its safe use is challenged by hydrogen embrittlement, a phenomenon in which hydrogen diffuses into metals and reduces their strength and ductility, potentially leading to sudden failure. This thesis investigates the effect of hydrogen on additively manufactured (3D-printed) 316L stainless steel. While additive manufacturing enables complex geometries, it also introduces microstructural features such as cellular dislocation structures, porosity, and interfaces, which influence hydrogen–material interactions. Experimental and microscopic analyses show that hydrogen accumulates at these microstructural features. This leads to increased strength but reduced ductility, making the material more prone to cracking. These findings improve the understanding of material failure in hydrogen environments and support the design of safer, more reliable components for hydrogen technologies.

Jury members

Prof. Pascal J. Jacques  (UCLouvain), Supervisor

Prof. Kim Verbeken (Ghent University), Supervisor

Prof. Tom Depover (Ghent University), Supervisor

Prof. Hennie De Schepper  (Ghent University), Chairperson

Prof. Hosni Idrissi  (UCLouvain), Secretary

Prof. Vahid Javaheri (University of Oulu)

Prof. Hossein Beladi (Ghent University)

Dr. Nuria Fuertes (Swerim)

Dr. Antoine Hilhorst(UCLouvain)

Pay attention : the public defense of Ali Nabizada will also take place in the form of a videoconference