TiC-containing diamond-like carbon(TiC-DLC)nanocomposite coatings were deposited by a rectangular cathodic arc ion-plating system using C_2H_2 as reacting gas.Raman spectroscopy and transmission electron microscopy analysis show that with increasing flow rate of C_2H_2,the structure of nanocomposite coatings changes from TiC nanograin-containing to graphite nanograin-containing DLC.The hardness measurements show that the hardness decreases from 28 GPa to 18 GPa with increasing C_2H_2 flow rate.The scratch test show that a high critical load(>40 N)was obtained and exhibited a good adhesion between the coating and the substrate.Wear experiment shows that the friction coefficient of TiC-DLC nanocomposite coatings decreases with increasing C_2H_2.A low friction coefficient of 0.07 was obtained at 480 sccm C_2H_2.
参考文献
[1] | A. A. Voevodin;J. S. Zabinski .Superhard, functionally gradient, nanolayered and nanocomposite diamond-like carbon coatings for wear protection[J].Diamond and Related Materials,1998(2/5):463-467. |
[2] | P. Holubar;M. Jilek;M. Sima .Present and possible future applications of superhard nanocomposite coatings[J].Surface & Coatings Technology,2000(0):145-151. |
[3] | H. Liepack;K. Bartsch;B. Arnold .Characteristics of excess carbon in PACVD TiC-amorphous carbon layers[J].Diamond and Related Materials,2004(1):106-110. |
[4] | C. Casiraghi;A. C. Ferrari;J. Robertson .Raman spectroscopy of hydrogenated amorphous carbons[J].Physical review, B. Condensed matter and materials physics,2005(8):085401.1-085401.14. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%