Darut, G.; Klyatskina, E.; Valette, S.; Carles, P.; Denoirjean, A.; Montavon, G.; Ageorges, H.... (2012). Architecture and phases composition of suspension plasma sprayed alumina titania sub-micrometer-sized coatings. Materials Letters. 67(1):241-244. https://doi.org/10.1016/j.matlet.2011.09.096
Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10251/150425
Título:
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Architecture and phases composition of suspension plasma sprayed alumina titania sub-micrometer-sized coatings
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Autor:
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Darut, Geoffrey
Klyatskina, Elizaveta
Valette, Stéphane
Carles, Pierre
Denoirjean, Alain
Montavon, Ghislain
Ageorges, Hélène
Segovia-López, Francisco
Salvador Moya, Mª Dolores
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Entidad UPV:
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Universitat Politècnica de València. Departamento de Ingeniería Mecánica y de Materiales - Departament d'Enginyeria Mecànica i de Materials
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Fecha difusión:
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Resumen:
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[EN] Sub-micrometer-sized Al 2O 3-TiO 2 plasma-sprayed coatings exhibit superior performances compared to micrometer-sized ones. Two routes can be implemented to manufacture such finely structured coatings: i) spraying ...[+]
[EN] Sub-micrometer-sized Al 2O 3-TiO 2 plasma-sprayed coatings exhibit superior performances compared to micrometer-sized ones. Two routes can be implemented to manufacture such finely structured coatings: i) spraying micrometer-sized agglomerates of nanometer-sized particles which results in a two-scale coating architecture and ii) spraying a suspension of sub-micrometer-sized particles (suspension plasma spraying, SPS). SPS was implemented in this study and Al 2O 3-base coatings with 13 and 60 wt.% of titania, respectively, were manufactured by spraying a suspension made of a mixture of Al 2O 3 and TiO 2 particles both of 300 nm, average diameter. Coating structural features and phase contents were studied. Results show that the coatings exhibit a very fine lamellar structure with a homogeneous repartition of Al and Ti. Complex phases, made of intermediate Al, Ti, and O oxides, have been also identified. Indeed, coatings formation results from rapid solidification rates and high transient thermal fluxes imparted by the plasma flow to the substrate due to the short spray distance encountered in SPS (in the order of 30 mm) requested by the small kinetics and thermal inertia of sub-micrometer-sized particles. © 2011 Elsevier B.V. All rights reserved.
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Palabras clave:
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Alumina
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Nanocomposites
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Phase transformation
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Suspension plasma spraying
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Titania
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Alumina-titania
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Average diameter
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Complex phasis
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Fine lamellar structure
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Finely structured coatings
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Nanometer-sized particles
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Phase content
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Plasma sprayed
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Plasma-sprayed coatings
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Spray distances
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Structural feature
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Thermal fluxes
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Thermal inertia
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TiO
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Aluminum
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Micrometers
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Plasma jets
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Plasma spraying
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Plasmas
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Rapid solidification
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Suspensions (fluids)
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Titanium dioxide
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Sprayed coatings
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Derechos de uso:
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Reconocimiento - No comercial - Sin obra derivada (by-nc-nd)
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Fuente:
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Materials Letters. (issn:
0167-577X
)
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DOI:
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10.1016/j.matlet.2011.09.096
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Editorial:
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ELSEVIER SCIENCE BV
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Versión del editor:
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https://doi.org/10.1016/j.matlet.2011.09.096
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Agradecimientos:
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This work was conducted within the frame of the French FCE-NANOSURF consortium that was granted by the French Ministry and Industry and local governments of Region Centre and Region Limousin, and the Conselleria de la ...[+]
This work was conducted within the frame of the French FCE-NANOSURF consortium that was granted by the French Ministry and Industry and local governments of Region Centre and Region Limousin, and the Conselleria de la Generalitat Valenciana, the financial supports of which are acknowledged by the authors.
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Tipo:
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Artículo
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