Effects of tungsten addition on mechanical and tribological properties of carbon nitride prepared by DC magnetron sputtering

Y. L. Su, Y. F. Lin, S. H. Yao, C. J. Hsu

研究成果: Conference contribution

1 引文 斯高帕斯(Scopus)

摘要

Carbon nitride coatings doped with tungsten were deposited on high speed steel disks by unbalanced DC magnetron sputtering using nitrogen-argon mixture gas. The coatings were deposited on three different types of interlayer (Ti, Ti/TiN and Ti/TiC), and the tungsten target current was varied from 0 to 0.9 A. Surface morphology of the coatings were measured by roughness testing and scanning electron microscopy (SEM). In addition, the chemical composition and depth profile were analyzed by X-ray Diffraction (XRD) analysis, Raman spectroscopy, and glow discharge spectroscopy (GDS). Finally, the hardness (H) and elasticity (E) were measured by nano-indentation and a Rockwell indentation test, while the tribological properties were tested using a pin-on-disk tribometer. After all, the coatings were measured by cutting testing of tuning inserts and micro-drillers. It is found that all of the coatings are amorphous and have a thickness of approximately 1.5 μ m. Moreover, the nitrogen content is around 30 at%, while the tungsten content varies in the range of 0-9 at%. In addition, the hardness values are in the range of 15-20 GPa and the elasticity varies from 236 to 274 GPa. A good correlation is observed between the wear resistance and the indentation adhesion level. Furthermore, it is found that the hardness is not significantly correlated to the tungsten content and the coatings deposited on the Ti/TiC interlayer have greater adhesion. Finally, the coatings generally have a very low coefficient of friction (0.01-0.3) and a wear coefficient as low as 10-6 mm3/Nm, and the CN/TiC coating reduced 41% and 43% of flank wear in the cutting testing of turning inserts and micro-drillers respectively.

原文English
主出版物標題Tribology Engineering
編輯Yunn-Lin Hwang, Jeng-Haur Horng, Chin-Chung Wei
發行者Trans Tech Publications Ltd
頁面24-29
頁數6
ISBN(電子)9783038354581
DOIs
出版狀態Published - 2015
事件International Conference on Engineering Tribology Technology, ICETT 2014 - Nantou, Taiwan
持續時間: 2014 11月 212014 11月 23

出版系列

名字Key Engineering Materials
642
ISSN(列印)1013-9826
ISSN(電子)1662-9795

Other

OtherInternational Conference on Engineering Tribology Technology, ICETT 2014
國家/地區Taiwan
城市Nantou
期間14-11-2114-11-23

All Science Journal Classification (ASJC) codes

  • 一般材料科學
  • 材料力學
  • 機械工業

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