Asociación Centro Tecnológico Ceit (CEIT)
Centro / Instituto vinculado a la Universidad de Navarra
Centro de Investigación en Materiales Avanzados
Chihuahua, MéxicoPublicaciones en colaboración con investigadores/as de Centro de Investigación en Materiales Avanzados (15)
2020
2017
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Effect of low-content of carbon nanotubes on the fracture toughness and hardness of carbon nanotube reinforced alumina prepared by sinter, HIP and sinter + HIP routes
Materials Research Express, Vol. 4, Núm. 8
2016
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Formation of a protective alumina layer after sintering for the deceleration of low temperature degradation in alumina-toughened zirconia ceramics
Ceramics International, Vol. 42, Núm. 14, pp. 16417-16423
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SWCNTs versus MWCNTs as Reinforcement Agents in Zirconia-and Alumina-based Nanocomposites: Which One to Use
Advanced Ceramics (Wiley Blackwell), pp. 261-297
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Spark plasma sintering of multi-, single/double- and single-walled carbon nanotube-reinforced alumina composites: Is it justifiable the effort to reinforce them?
Ceramics International, Vol. 42, Núm. 1, pp. 2054-2062
2015
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Sintering in a graphite powder bed of alumina-toughened zirconia/carbon nanotube composites: A novel way to delay hydrothermal degradation
Ceramics International, Vol. 41, Núm. 3, pp. 4569-4580
2012
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Hard and tough carbon nanotube-reinforced zirconia-toughened alumina composites prepared by spark plasma sintering
Carbon, Vol. 50, Núm. 2, pp. 706-717
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High temperature oxidation of silicon nitride based ceramics: A review
Silicon Nitride: Synthesis, Properties and Applications (Nova Science Publishers, Inc.), pp. 1-31
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X-ray diffraction evidence of a phase transformation in zirconia by the presence of graphite and carbon nanotubes in zirconia toughened alumina composites
International Journal of Refractory Metals and Hard Materials, Vol. 35, pp. 315-318
2011
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A comparison of the effects of multi-wall and single-wall carbon nanotube additions on the properties of zirconia toughened alumina composites
Carbon, Vol. 49, Núm. 5, pp. 1599-1607
2010
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Sinter and hot isostatic pressing (HIP) of multi-wall carbon nanotubes (MWCNTs) reinforced ZTA nanocomposite: Microstructure and fracture toughness
International Journal of Refractory Metals and Hard Materials, Vol. 28, Núm. 3, pp. 399-406
2009
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Fracture toughness of an α-Al2O3 ceramic for joint prostheses under sinter and sinter-HIP conditions
International Journal of Refractory Metals and Hard Materials, Vol. 27, Núm. 4, pp. 722-728
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Hot isostatic pressing (HIP) of α-Al2O3 submicron ceramics pressureless sintered at different temperatures: Improvement in mechanical properties for use in total hip arthroplasty (THA)
International Journal of Refractory Metals and Hard Materials, Vol. 27, Núm. 5, pp. 900-906
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Using high-purity MgO nanopowder as a stabilizer in two different particle size monoclinic ZrO2: Its influence on the fracture toughness
Materials Chemistry and Physics, Vol. 114, Núm. 1, pp. 407-414
2007
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Elucidating of the microstructure of ZrO2 ceramics with additions of 1200 °C heat treated ultrafine MgO powders: Aging at 1420 °C
Materials Chemistry and Physics, Vol. 106, Núm. 1, pp. 45-53