Title : ( The effect of TiC:CNT mixing ratio and CNT content on the mechanical and tribological behaviors of TiC modified CNT-reinforced Al-matrix nanocomposites )
Authors: Farhad Saba , Mohsen Haddad Sabzevar , Seyed Abdolkarim Sajjadi , F. Zhang ,Access to full-text not allowed by authors
Abstract
Metal-matrix composites (MMCs), Carbon nanotubes, Surface modification, Spark plasma sintering. Mechanical properties, Wear characteristics.
Keywords
, In this study, a novel method was developed for surface modification of CNTs through a pressureless spark plasma sintering. TiC:CNT mixing ratio was changed in the range of 1:2-5:2 to find the optimum ratio. Thereafter, by changing the amount of nanotubes in the optimal mixing ratio (4:2), the effec@article{paperid:1067735,
author = {Saba, Farhad and Haddad Sabzevar, Mohsen and Sajjadi, Seyed Abdolkarim and },
title = {The effect of TiC:CNT mixing ratio and CNT content on the mechanical and tribological behaviors of TiC modified CNT-reinforced Al-matrix nanocomposites},
journal = {Powder Technology},
year = {2018},
volume = {331},
month = {March},
issn = {0032-5910},
pages = {107--120},
numpages = {13},
keywords = {In this study; a novel method was developed for surface modification of CNTs through a pressureless spark plasma sintering. TiC:CNT mixing ratio was changed in the range of 1:2-5:2 to find the optimum ratio. Thereafter; by changing the amount of nanotubes in the optimal mixing ratio (4:2); the effect of modified-CNT content (0.5-5 wt.%) on the mechanical and tribological properties was investigated. The composite sample containing 1.5 wt.% modified-CNT; with the mixing ratio of 4:2; showed the greatest properties. The results showed that microhardness; nanohardness and Young’s modulus of the sample have the highest values of 97.61 HV; 0.93 GPa and 100.48 GPa; respectively. In addition; mean friction coefficient of 0.22 and wear weight loss of 7.4 mg were obtained for the composite.},
}
%0 Journal Article
%T The effect of TiC:CNT mixing ratio and CNT content on the mechanical and tribological behaviors of TiC modified CNT-reinforced Al-matrix nanocomposites
%A Saba, Farhad
%A Haddad Sabzevar, Mohsen
%A Sajjadi, Seyed Abdolkarim
%A
%J Powder Technology
%@ 0032-5910
%D 2018