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Journal of Physics and Chemistry of solids,
73(4):554-558
2012
ISSN: 0022-3697
Resume: Zr1-xWx nanocrystalline films of Zr-W solid solutions and ZrW2 Laves phase were synthesized by magnetron co-sputtering. Large values of the H/E ratio up to 0.09 are observed for grain sizes in the nanometer range along with a hardness above 10 GPa and Young's modulus below 230 GPa. H/E values are correlated with the developed surface of grain boundaries suggesting an elastic deformation mostly handled by the grain boundaries. This is associated to friction coefficients comparable to those of metallic glass surfaces. In contrast to fragile bulk Laves phases, no cracks were detected at the film surface after indentation and scratch test of nanocrystalline ZrW2. The friction coefficient of such films against diamond tip was in the range 0.08-0.15, similarly to metallic glass surfaces. (C) 2011 Elsevier Ltd. All rights reserved. Equipe: Département SI2M : Microstructures et Contraintes |
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Journal of Physics and Chemistry of Solids,
73:554-558
2012
Equipe: Département CP2S : Elaboration et Fonctionnalité de Couches Minces |
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Journal of Applied Physics,
111:043706
2012
Equipe: Département CP2S : Matériaux à propriétés thermoélectriques |
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PHYSICAL REVIEW B,
85(24)
2012
ISSN: 1098-0121
Equipe: Département P2M : Surfaces et Spectroscopies |
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Microporous and mesoporous materials,
152:240â??245
2012
Equipe: Département CP2S : Matériaux Carbonés |
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Journal of Materials Research,
27:741-742
2012
Equipe: Département CP2S : Elaboration et Fonctionnalité de Couches Minces |
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Investigations on AlN/sapphire piezoelectric bilayer structure for high-temperature SAW applications
IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control,
59(5):999-1005
2012
Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies |
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IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control,
59(2):194-197
2012
Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies |
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Intern. J. Quantum Chem.,
sous presse
2012
Equipe: Département CP2S : Métallurgie et Surfaces |
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Applied Physics Letters,
101(16)
2012
Equipe: Département P2M : Nanomagnétisme et Electronique de Spin |