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Titel:

Future Regeneration Processes for High Pressure Turbine Blades

Autor(en): M. Nicolaus, B. Rottwinkel, K. Möhwald, C. Nölke, S. Kaierle, H.J. Maier, V. Wesling
Zusammenfassung: In this paper new technologies for repairing turbine blades are exposed, in which manufacturing processes and materials mechanisms are incorporated. The turbine blades considered here are components of high pressure turbines. This is why the focus of this paper lies on nickel-based alloys. Depending on the size and form of the defects present on the blades, two procedures can be used for repairing turbine blades: cladding and/or high temperature brazing. On one hand a laser cladding process for crack repair was developed, this process can create a single-crystalline solidification of the cladding material. While on the other hand a hybrid repair brazing process was also developed, in which the brazing material and the hot gas corrosion protective coating were applied by means of thermal spraying; an aluminizing of the coating was also integrated into a transient-liquid-phase-bonding-process.
Veranstaltung: Deutscher Luft- und Raumfahrtkongress 2015, Rostock
Verlag, Ort: Deutsche Gesellschaft für Luft- und Raumfahrt - Lilienthal-Oberth e.V., Bonn, 2017
Medientyp: Conference Paper
Ausgabe:2. Aktualisierte Ausgabe
Sprache: englisch
Format: 21,0 x 29,7 cm, 6 Seiten
URN: urn:nbn:de:101:1-201701202629
Stichworte zum Inhalt: brazing-aluminizing hybridprocess, single crystal cladding
Verfügbarkeit: Download - Bitte beachten Sie die Nutzungsbedingungen dieses Dokuments: CC BY-ND 4.0 OPEN ACCESS
Kommentar: Für dieses Dokument existiert eine ältere Ausgabe.
Veröffentlicht am: 20.01.2017