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Influence of Mechanical Surface Treatment on High-Temperature Oxidation of Pure Titanium

Article dans une revue avec comité de lecture
Author
KANJER, Armand
496957 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
OPTASANU, Virgil
496957 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
LAVISSE, Luc
496957 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
MARCO DE LUCAS, Maria Del Carmen
496957 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
DEJARDIN, Steeve
496957 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
FRANÇOIS, Manuel
1685 Laboratoire des Systèmes Mécaniques et d'Ingénierie Simultanée [LASMIS]
BERGER, Pascal D.
40023 Service de la Corrosion et du Comportement des Matériaux dans leur Environnement [SCCME]
103762 Laboratoire d'Etudes des Eléments Légers [LEEL - UMR 3685]
247331 Nanosciences et Innovation pour les Matériaux, la Biomédecine et l'Energie (ex SIS2M) [NIMBE UMR 3685]
PEYRE, Patrice
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
GORNY, Cyril
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
MONTÉSIN, Tony
496957 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]

URI
http://hdl.handle.net/10985/15466
DOI
10.1007/s11085-016-9700-6
Date
2017
Journal
Oxidation of Metals

Abstract

The excellent combination of light-weight and good mechanical properties makes titanium alloys attractive for compressor section components in gas turbine engines (temperature between 250 and 600 °C). However, above 600 °C, the formation of an unprotective oxide layer facilitates the oxygen diffusion into the alloy. In this experimental study, pure titanium was treated with mechanical surface treatment to promote better protection against oxidation at high temperature. Shot-peened and laser-shock peened specimens were compared to untreated samples in terms of oxidation behavior at high temperature. We used thermal gravimetric analysis to oxidize the samples at 700 °C for 100 h. Subsequently, XRD, optical microscopy, SEM/EDS, NRA, micro-Raman spectroscopy, and micro-hardness were used to characterize the oxide scale and the alpha-case layer formed during the high-temperature exposure. The shot-peened samples oxidized less (−45%) than the untreated and laser-shock peened samples. This behavior was attributed to the formation of a continuous nitride layer between oxide and metal.

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