Articles: | |
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Calphad,
31:361-369
2007
Equipe: Département CP2S : Surface et Interface, réactivité chimique des matériaux |
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Journal of Applied Physics,
101:073102
2007
Equipe: Département CP2S : Elaboration et Fonctionnalité de Couches Minces |
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Journal of Non-Crystalline Solids,
353:3644â??3649
2007
Equipe: Département CP2S : Elaboration et Fonctionnalité de Couches Minces |
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Applied Physics Letters,
91(13)
2007
Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies |
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Journal of physical chemistry C,
111(42):15154-15159
2007
Equipe: Département CP2S : Matériaux Carbonés |
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Journal of Applied Physics,
101(11)
2007
Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies |
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Applied physics letters,
91(7):072512
2007
Equipe: Département CP2S : Matériaux Carbonés |
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Integrated Ferroelectrics,
91(1):119-128
2007
Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies |
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Applied Physics Letters,
90(19)
2007
Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies |
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Journal of Materials,
59(1):54-58
2007
ISSN: 1047-4838
Resume: The prediction of microstructure during processing needs to characterize the phase transformation occurring during the thermal treatments and their kinetics. In-situ high-energy synchrotron x-ray diffraction experiments performed during temperature variations allow the characterization of the phase evolution. For some transformation conditions, the continuous recording of diffraction diagrams evidences clearly intermediate phases. The quantitative analysis of the diffraction diagrams gives the transformation kinetics of each phase as well as their cell parameters. Transformation kinetics obtained by this method are compared to results obtained by electrical resistivity. Equipe: Département SI2M : Département SI2M : Microstructures et Contraintes |