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Sinter and hot isostatic pressing (HIP) of multi-wall carbon nanotubes (MWCNTs) reinforced ZTA nanocomposite: Microstructure and fracture toughness
Authors:J Echeberria  J Ollo  MH Bocanegra-Bernal  A Garcia-Reyes  C Domínguez-Rios  A Aguilar-Elguezabal  A Reyes-Rojas
Affiliation:1. CEIT and TECNUN (University of Navarra), 20018 San Sebastian, Spain;2. Centro de Investigación en Materiales Avanzados, CIMAV S.C., Laboratorio Nacional de Nanotecnologia, Miguel de Cervantes # 120, Complejo Industrial Chihuahua, Chihuahua 31109, Mexico;3. Interceramic, Departamento de Investigación y Desarrollo, Av. Carlos Pacheco 7200, Chihuahua 31060, Mexico
Abstract:This work describes the microstructure and fracture toughness of zirconia toughened alumina (ZTA) nanocomposite in which multi-wall carbon nanotubes (MWCNTs) and nanosized ZrO2 particles were used as reinforcement. The ZTA nanocomposites with additions of 0, 0.005, and 0.01 wt.% MWCNTs and 2 wt.% nanosized ZrO2 particles were pressureless sintered in an anti-oxidant sagger with graphite powder bed at 1520 °C during 1 h in air and then HIPed at 1475 °C in argon atmosphere 1 h at a pressure of 150 MPa. Relative densities ranging 94–98% were reached. In HIPed composites the hardness and fracture toughness values were increased up to ∼17% and ∼37%, respectively, compared to the “as sintered” composites free of carbon nanotubes. A combined fracture mode, crack deflection, pull-outs of a small amount of carbon nanotubes, and bridging effect were the mechanisms leading to the improvement in fracture toughness.
Keywords:Zirconia toughened alumina  Crack deflection  Hardness  Fracture toughness  Pull-out
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