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https://ria.asturias.es/RIA/handle/123456789/14599
Título : | Alumina/molybdenum nanocomposites obtained by colloidal synthesis and spark plasma sintering |
Autor : | Fenández-González, Daniel Suárez, Marta Piñuela-Noval, Juan Díaz, Luis Antonio Gómez-Rodríguez, Cristian García Quiñonez, Linda Viviana Borrell, Amparo Fernández, Adolfo |
Palabras clave : | Sinterización Materiales |
Fecha de publicación : | 10-nov-2022 |
Editorial : | ELSEVIER |
Citación : | D. Fernández-González, M. Suárez, J. Piñuela-Noval, L.A. Díaz, C. Gómez-Rodríguez, L.V. García Quiñonez, A. Borrell, A. Fernández. Alumina/molybdenum nanocomposites obtained by colloidal synthesis and spark plasma sintering. Ceramics International 49 (2023), 9432-9441. 10.1016/j.ceramint.2022.11.108 |
Resumen : | Alumina/molybdenum nanocomposites were prepared by colloidal synthesis from alumina powder and molybdenum (V) chloride using ethanol as dispersion medium. Modified alumina was calcined at 450 ◦C in air atmosphere to remove chlorides, and then treated in a tubular furnace at 850 ◦C under Ar/H2 to reduce the MoO3 formed in the previous stage and obtain Al2O3 with molybdenum nanoparticles on the surface. Three different molybdenum contents were proposed (1, 5 and 10 wt % Mo), and pure alumina was used as reference, that were sintered by spark plasma sintering (SPS) under vacuum atmosphere at 1400 ◦C for 3 min with an applied pressure of 80 MPa. Composites were characterized by microstructure, hardness, toughness, and three-point bending test. The presence of molybdenum nanoparticles resulted in a fine-grained structure promoted by the presence of molybdenum at grain boundaries and triple points, as well as by the utilization of the SPS equipment. Hardness is at least a 20% greater and fracture toughness 30% larger in the composites than in the monolithic alumina. |
URI : | https://ria.asturias.es/RIA/handle/123456789/14599 |
ISSN : | 0272-8842 |
Aparece en las colecciones: | Innovación tecnológica |
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Fichero | Descripción | Tamaño | Formato | |
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Al2O3-Mo.pdf | 1.01 MB | Adobe PDF | Ver/Abrir |
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