Masterarbeit Prozessparameterentwicklung, Werkstoff 316L - kosteneffiziente additive Fertigung mittels PBF-LB/M
Core
Experimental characterization of 316L powder properties and development of process parameters for cost-efficient PBF-LB/M additive manufacturing.
Role type
Master's thesis researcher (additive manufacturing process engineering)
Builds
Production-ready metal parts via LPBF
Domain
Additive manufacturing / Materials science
Deliverable
production ML models | product features | dashboards & analysis | research | client delivery | infrastructure | physical/clinical work
Required skills
statistical experimental design (DoE), metallographic preparation, optical microscopy, data analysis (Python/MATLAB), LPBF machine operation
Preferred skills
prior internship in industry, knowledge of shopfloor operations
Technologies
LPBF systems, Python, MATLAB, optical microscopes
Responsibilities
Conduct experimental investigations on 316L powder physical characterization, create statistical experimental plans for process parameter variation, monitor printing process on LPBF systems, prepare and analyze printed specimens metallographically, derive relationships between powder properties and optimal parameters
Seniority
Master's student / Researcher