Abstract

Hybrid materials with the metal matrix are important engineering materials due to their outstanding mechanical and tribological properties. Here are presented selected tribological properties of the hybrid composites with the matrix made of aluminum alloy and reinforced by the silicon carbide and graphite particles. The tribological characteristics of such materials are superior to characteristics of the matrix – the aluminum alloy, as well as to characteristics of the classical metal-matrix composites with a single reinforcing material. Those characteristics depend on the volume fractions of the reinforcing components, sizes of the reinforcing particles, as well as on the fabrication process of the hybrid composites. The considered tribological characteristics are the friction coefficient and the wear rate as functions of the load levels and the volume fractions of the graphite and the SiC particles. The wear rate increases with increase of the load and the Gr particles content and with reduction of the SiC particles content. The friction coefficient increases with the load, as well as with the SiC particles content increase.

Details

Title
Influence of load and reinforcement content on selected tribological properties of Al/SiC/Gr hybrid composites
Author
Veličković, Sandra 1 ; Miladinović, Slavica 1 ; Stojanović, Blaža 1 ; Nikolić, Ružica R 2 ; Hadzima, Branislav 2 ; Arsić, Dušan 1 

 University of Kragujevac, Faculty of Engineering, Sestre Janjić 6, Kragujevac, Serbia, +381 34 335990 
 University of Žilina, Research Center, Univerzitna 8215/1, 010 26Žilina, Slovakia 
Pages
18-23
Publication year
2018
Publication date
2018
Publisher
De Gruyter Poland
ISSN
23535156
e-ISSN
23537779
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
3157113538
Copyright
© 2018. This work is published under http://creativecommons.org/licenses/by-nc-nd/3.0 (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.