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References

Articles:

Stein, N., Petermann, N., Theissmann, R., Schierning, G., Schmechel, R. and Wiggers, H.
Journal of Materials Research, 26(15):1872-1878
2011

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

Stein, N., Petermann, N., Theissmann, R., Schierning, G., Schmechel, R. and Wiggers, H.
Journal of Materials Research, 26(15):1872-1878
2011

Equipe: Département CP2S : Chimie et électrochimie des matériaux

Stein, N., Petermann, N., Theissmann, R., Schierning, G., Schmechel, R. and Wiggers, H.
Journal of Materials Research, 26(18):2459-2459
2011

Equipe: Département CP2S : Chimie et électrochimie des matériaux

Aubert, T., Elmazria, O., Assouar, B., Bouvot, L., Hehn, M., Weber, S., Oudich, M. and Genève, D.
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 58(3):603-610
2011

Equipe: Département P2M : Nanomagnétisme et Electronique de Spin

Aubert, T., Elmazria, O., Assouar, B., Bouvot, L., Hehn, M., Weber, S., Oudich, M. and Genève, D.
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 58(3):603-610
2011

Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies

LEDOUX, X., VILASI, M., MATHIEU, S., Panteix, J.P., Del-Gallo, P. and Wagner, M.
Advanced Materials Research, 278:491-496
2011

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

Schwesig, D., Schierning, G., Theissmann, R., Stein, N., Petermann, N., Wiggers, H., Schmechel, R. and Wolf, D. E.
Nanotechnology, 22(13)
2011

Equipe: Département CP2S : Chimie et électrochimie des matériaux

Berveiller, S., Malard, B., Wright, J., Patoor, E. and Geandier, G.
Acta Materialia, 59(9):3636-3645
2011
ISSN: 1359-6454

Resume: Two synchrotron diffraction techniques, three-dimensional X-ray diffraction and Laue microdiffraction, are applied to studying the deformation behaviour of individual grains embedded in a Cu(74)Al(23)Be(3) superelastic shape memory alloy. The average lattice rotation and the intragranular heterogeneity of orientations are measured during in situ tensile tests at room temperature for four grains of mean size similar to 1 mm. During mechanical loading, all four grains rotate and the mean rotation angle increases with austenite deformation. As the martensitic transformation occurs, the rotation becomes more pronounced, and the grain orientation splits into several sub-domains: the austenite orientation varies on both sides of the martensite variant. The mean disorientation is similar to 1 degrees. Upon unloading, the sub-domains collapse and reverse rotation is observed. (C) 2011 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

Equipe: Département SI2M : Microstructures et Contraintes

Addou, R., SHUKLA, A. K., ALARCON-VILLESECA, S., Gaudry, E., Deniozou, Th., Heggen, M., Feuerbacher, M., Widmer, R., Groening, O., Fournee, V., Dubois, J. M. and Ledieu, J.
New journal of physics, 13:103011
2011
ISSN: 1367-2630

Equipe: Département CP2S : Métallurgie et Surfaces

Dufour, C., Fitzsimmons, M.R., Borchers, J.A., Laver, M., Krycka, K.L., Dumesnil, K., Watson, S.M., Chen, W.C., Won, J. and Singh, S.
Physical Review B - Condensed Matter and Materials Physics, 84(6)
2011

Equipe: Département P2M : Nanomagnétisme et Electronique de Spin

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