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dc.contributor.authorLied, Philipp
dc.date.accessioned2025-02-25T04:12:52Z
dc.date.available2025-02-25T04:12:52Z
dc.date.issued2025
dc.date.submitted2025-02-24T13:47:03Z
dc.identifierhttps://library.oapen.org/handle/20.500.12657/98909
dc.identifier.urihttps://doab-dev.siscern.org/handle/20.500.12854/151551
dc.description.abstractCold-rolled tungsten with high degrees of deformation exhibits exceptionally high ductility. However, the required ultra-fine-grained microstructure is thermally unstable. A promising stabilization approach is offered by potassium doping, the potential of which was comprehensively analyzed and qualified as part of this work. K-doped tungsten could significantly improve the technical possibilities for components of future fusion reactors under heavy thermal loads.
dc.languageGerman
dc.relation.ispartofseriesSchriftenreihe des Instituts für Angewandte Materialien, Karlsruher Institut für Technologie
dc.rightsopen access
dc.subject.otherPotassium doping; Recrystallization; rolling deformation; Refractory metals; Materials science; Kalium-Dotierung; Rekristallisation; Walzumformung; Refraktärmetalle; Materialwissenschaft
dc.subject.otherthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TG Mechanical engineering and materials
dc.titleSteigerung der thermischen Stabilität von warm- und kaltgewalztem Wolfram durch Kalium-Dotierung für die Fusionsenergietechnik
dc.typebook
oapen.identifier.doi10.5445/KSP/1000169486
oapen.relation.isPublishedBy68fffc18-8f7b-44fa-ac7e-0b7d7d979bd2
oapen.pages392
dc.seriesnumber116


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