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Wear behavior in Al2024–CNTs composites synthesized by mechanical alloying
JOSE LUIS BUENO ESCOBEDO
IVANOVICH ESTRADA GUEL
MARIO MIKI YOSHIDA
LILIANA LICEA JIMENEZ
ROBERTO MARTINEZ SANCHEZ
Acceso Abierto
Atribución-NoComercial
http://dx.doi.org/10.1016/j.wear.2012.05.016
Carbon nanotubes; Aluminum; Composites; Milling process; Abrasive wear; Pin-on-disc
The wear behavior of the 2024 aluminum alloy and its composites was evaluated through a pin-on-disk system. For this purpose the aluminum alloy was reinforced by carbon nanotubes dispersion produced by milling process. The nanotubes dispersion was carried out using a high energy mill for a fixed milling time. Milled powders were cold consolidated, sintered and then microstructurally and mechanically evaluated. The wear behavior of the alloy and its composites was evaluated considering the different nanotube contents under several abrasive conditions. The composites with higher nanotube concentration (5.0 wt%) displayed an improved wear resistance in all cases evaluated in this work.
15-07-2012
Artículo
Inglés
Perez-Bustamante, R., Bueno-Escobedo, J. L., Jimenez-Lobato, J., Estrada-Guel, I., Miki-Yoshida, M., Licea-Jimenez, L., & Martínez-Sánchez, R. (2012). Wear behavior in Al 2024–CNTs composites synthesized by mechanical alloying. Wear, 292, 169-175.
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