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Helixfräsen und Bohren von laseradditiv gefertigten Bauteilen aus Titan für Luftfahrtanwendungen
Citation Link: https://doi.org/10.15480/882.3723
Publikationstyp
Doctoral Thesis
Date Issued
2021
Sprache
German
Author(s)
Advisor
Referee
Title Granting Institution
Technische Universität Hamburg
Place of Title Granting Institution
Hamburg
Examination Date
2021-06-18
TORE-DOI
First published in
Number in series
47
Citation
Wissen schafft Innovation 47: (2021)
Bionically optimized components produced by selective laser melting (SLM) become established as aerospace components. For these components, support structures are essential for SLM in horizontal bores. To remove these support structures, helical milling and drilling processes are investigated in this work. By using the developed models, it is possible to identify the interaction between the cutting conditions, the machining forces, the chip formation and the quality of the inner wall of the bore.
Subjects
Helical milling
drilling
machining
Laser Additive Manufacturing
Titanium
DDC Class
600: Technik
620: Ingenieurwissenschaften
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Name
2021 - von Wenserski - Dissertation - Helixfraesen und Bohren von laseradditiv gefertigten Bauteilen aus Titan fuer Luftfahrtanwendungen.pdf
Size
9.03 MB
Format
Adobe PDF