2014 | |
Articles: | |
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Acta Materialia,
80:118--131
2014
ISSN: 1359-6454
Equipe: Département SI2M : Microstructures et Contraintes |
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Inorganic Chemistry,
53 (1):147-159
2014
Equipe: Département SI2M : Microstructures et Contraintes |
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Materials Science & Engineering A,
597:10-19
2014
Equipe: Département SI2M : Microstructures et Contraintes |
2013 | |
Articles: | |
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ISIJ International,
53:1215-1223
2013
Equipe: Département SI2M : Microstructures et Contraintes |
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Acta Materialia,
61:3758-3768
2013
Equipe: Département SI2M : Microstructures et Contraintes |
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Metallurgical and Materials Transactions A,
44 (2):1059-1073
2013
Equipe: Département SI2M : Microstructures et Contraintes |
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Journal of Alloys and Compounds,
5775:439-443
2013
Equipe: Département SI2M : Microstructures et Contraintes |
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Materials Science Forum,
738-739:97-102
2013
Resume: proceedings Conférence ESOMAT 2012 Equipe: Département SI2M : Microstructures et Contraintes |
2012 | |
Articles: | |
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Micron,
43(2-3):396-406
2012
ISSN: 0968-4328
Resume: In single-crystal nickel-based superalloys, the lattice mismatch associated with interface coherency between gamma matrix and gamma' precipitates has a strong influence on mechanical properties. The unconstrained lattice misfit in a single-crystal of the MC2 nickel-based superalloy is determined using convergent beam electron diffraction measurements and finite element calculations. The apparent lattice parameters of both constrained phases are obtained in thin foils, using a new multi-pattern approach, which allows for unambiguous determination of all the lattice parameters considering the real symmetry of the strained crystals. Finite element calculations are used to establish relations between the constrained and unconstrained lattice parameters, with the stress relaxation resulting from the thin foil geometry taken into account. (C) 2011 Elsevier Ltd. All rights reserved. Equipe: Département SI2M : Microstructures et Contraintes |
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Chemistry of materials,
24 (3):2429-2432
2012
DOI: 10.1021/cm301179x
Equipe: Département SI2M : Microstructures et Contraintes |