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References

2012

Articles:

Lane, Nina J., Vogel, Sven C., Hug, Gilles, Togo, Atsushi, Chaput, Laurent, Hultman, Lars and Barsoum, Michel W.
PHYSICAL REVIEW B, 86(21)
2012
ISSN: 1098-0121

Equipe: Département P2M : Surfaces et Spectroscopies

Van Landeghem, H., Goune, M. and Redjaïmia, A.
Journal of Crystal Growth, 341 (1):53-60
2012

Equipe: Département SI2M : Microstructures et Contraintes

MATHIEU, S., KNITTEL, S., BERTHOD, P., MATHIEU, S. and VILASI, M.
Corrosion Science, in press
2012

Equipe: Département CP2S : Surface et Interface, réactivité chimique des matériaux

Cvelbar, U., Modic, M., Kovac, J., Junkar, I., Eleršic, K., Lazovic, S., Brühl, S.P., Vujoševic, D., Canal, C., Belmonte, T. and Mozetic, M.
Surface and Coatings Technology, (accepted)
2012

Equipe: Département CP2S : Expériences et Simulations des Plasmas Réactifs - Interaction plasma-surface et Traitement des Surfaces ESPRITS

GONCALVES, A.P., LOPES, E.B., DELAIZIR, G., VANEY, J.-B., LENOIR, B., PIARRISTEGUY, A., PRADEL, A., MONNIER, J., OCHIN, P. and GODART, C.
Journal of Solid State Chemistry, in press
2012

Equipe: Département CP2S : Matériaux à propriétés thermoélectriques

Gateau, P., Petitjean, C., PANTEIX, P.J., RAPIN, C. and VILASI, M.
Journal of Non-Crystalline Solids, 358(8):1135-1140
2012

Equipe: Département CP2S : Surface et Interface, réactivité chimique des matériaux

ROCCA, E., Vantelon, D., Reguer, S. and MIRAMBET, F.
Materials Chemistry and Physics, 134:905-911.
2012

Equipe: Département CP2S : Surface et Interface, réactivité chimique des matériaux

MOSQUERA, A., Horwat, D., VASQUEZ, L., GUTIERREZ, A., ERKO, A., Anders, A., Andersson, J. and Endrino, J.L.
Journal of Materials Research, 27:829-836
2012

Equipe: Département CP2S : Elaboration et Fonctionnalité de Couches Minces

2011

Articles:

Barchiche, C. E., Veys-Renaux, D. and ROCCA, E.
Surface & Coatings Technology, 205(17-18):4243-4248.
2011

Equipe: Département CP2S : Surface et Interface, réactivité chimique des matériaux

Pushkareva, Irina, Redjaimia, Abdelkrim, Moulin, Antoine and Valle, Nathalie
Solid State Phenomena, 172-174(Part 1):839-844
2011
ISSN: 1012-0394

Resume: A detailed analysis of the evolution of industrial Dual Phase (DP) steel microstructures is carried out as a function of various annealing and tempering conditions. Advanced characterization techniques such as Parallel Electron Energy Loss Spectroscopy (PEELS) in the TEM and high spatial resolution Secondary Ion Mass Spectrometry (NanoSIMS) are employed in order to provide qualitative and quantitative measurements of local carbon concentration in the martensite. For certain annealing and tempering conditions, it is observed that local variations in carbon levels have occurred inside the individual martensite islands. These carbon variations strongly influence the damage behaviour of the steel. During tensile tests, a clear dependence of the damage mode on the local martensite carbon content is observed. Better knowledge of the relationship between the microstructure evolution at the sub-grain level and the damage behaviour can facilitate the design of DP steels with improved damage resistance.

Equipe: Département SI2M : Microstructures et Contraintes

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