Project Details
Determination of mechanisms and processes for the deoxidation of material surfaces and implementation thereof in both, laboratory and pilot plant scale (C01)
Subject Area
Glass, Ceramics and Derived Composites
Coating and Surface Technology
Joining and Separation Technology
Coating and Surface Technology
Joining and Separation Technology
Term
since 2020
Project identifier
Deutsche Forschungsgemeinschaft (DFG) - Project number 394563137
Having shown the successful deoxidation of copper and iron in the reducing protective atmospheres by a plasma technique, the further aim of this subproject is to expand the range of materials to other metals as well as complex systems like steels and alloys, which need to be fully deoxidized. The focus of the work lies on the variation of operating parameters of plasma as well as combination of plasma and thermal deoxidation with the aim of the improvement and deeper understanding of the deoxidation effect. In addition, the deoxidation modules for other sub-projects of the SFB will be further developed in order to integrate plasma-induced deoxidation into the manufacturing processes.
DFG Programme
Collaborative Research Centres
Major Instrumentation
Hochgeschwindigkeitskamera
Instrumentation Group
5430 Hochgeschwindigkeits-Kameras (ab 100 Bilder/Sek)
Applicant Institution
Gottfried Wilhelm Leibniz Universität Hannover
Project Heads
Professor Dr. Wolfgang Maus-Friedrichs; Dr. Lienhard Wegewitz