Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7111511 | Diamond and Related Materials | 2013 | 7 Pages |
Abstract
Silver-carbon nanocomposite coatings were deposited by plasma-enhanced chemical vapor deposition and d.c. magnetron sputtering of a silver target. Coatings with various metal concentrations were prepared by changing of acetylene and argon gas mixture ratio (C2H2/Ar), and concentrations of more than 40Â at.%Ag was achieved in this study. Transmission electron microscope revealed that silver metallic grains with typically 15Â nm were dispersed in amorphous carbon host matrix. Size of the grains increased with decrease of the gas mixture ratio due to secondary or triangularly formed metal grains. Tribological behavior of the coatings was investigated using reciprocating tribometer with in-situ electrical contact resistance measurement. Low and stable friction coefficient was achieved in the specimen with relatively low Ag concentration. Elemental mapping results on the ball after the friction tests reveal that tribofilm was formed on the ball when low and stable friction was achieved, and the tribofilm was mainly composed of C and Ag. It can be concluded that formation of the tribofilm is necessary for achieving low and stable friction.
Keywords
Related Topics
Physical Sciences and Engineering
Engineering
Electrical and Electronic Engineering
Authors
Takanori Takeno, Hayato Saito, Minoru Goto, Julien Fontaine, Hiroyuki Miki, Michel Belin, Toshiyuki Takagi, Koshi Adachi,