Corrosion and Wear Behaviors of Cr-Doped Diamond-Like Carbon Coatings

被引:1
作者
S. Viswanathan
L. Mohan
Parthasarathi Bera
V. Praveen Kumar
Harish C. Barshilia
C. Anandan
机构
[1] CSIR-National Aerospace Laboratories,Surface Engineering Division
来源
Journal of Materials Engineering and Performance | 2017年 / 26卷
关键词
corrosion; Cr-doped DLC; Raman spectroscopy; wear; XPS;
D O I
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中图分类号
学科分类号
摘要
A combination of plasma-enhanced chemical vapor deposition and magnetron sputtering techniques has been employed to deposit chromium-doped diamond-like carbon (DLC) coatings on stainless steel, silicon and glass substrates. The concentrations of Cr in the coatings are varied by changing the parameters of the bipolar pulsed power supply and the argon/acetylene gas composition. The coatings have been studied for composition, morphology, surface nature, nanohardness, corrosion resistance and wear resistance properties. The changes in ID/IG ratio with Cr concentrations have been obtained from Raman spectroscopy studies. Ratio decreases with an increase in Cr concentration, and it has been found to increase at higher Cr concentration, indicating the disorder in the coating. Carbide is formed in Cr-doped DLC coatings as observed from XPS studies. There is a decrease in sp3/sp2 ratios with an increase in Cr concentration, and it increases again at higher Cr concentration. Nanohardness studies show no clear dependence of hardness on Cr concentration. DLC coatings with lower Cr contents have demonstrated better corrosion resistance with better passive behavior in 3.5% NaCl solution, and corrosion potential is observed to move toward nobler (more positive) values. A low coefficient of friction (0.15) at different loads is observed from reciprocating wear studies. Lower wear volume is found at all loads on the Cr-doped DLC coatings. Wear mechanism changes from abrasive wear on the substrate to adhesive wear on the coating.
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页码:3633 / 3647
页数:14
相关论文
共 229 条
[1]  
Robertson J(2002)Diamond Like Amorphous Carbon Mater. Sci. Eng. R 37 129-281
[2]  
Grill A(1999)Diamond Like Carbon: State of The Art ‎Diamond Relat. Mater. 8 428-434
[3]  
Donnet C(1997)Friction Control of Diamond Like Carbon Coatings Surf. Coat. Technol. 94 456-462
[4]  
Grill A(2006)Biocompatibility of Calcium and Phosphorus Doped Diamond-Like Carbon Thin Films Synthesized by Plasma Immersion Ion Implantation and Deposition ‎Diamond Relat. Mater. 15 893-897
[5]  
Kwok SCH(2002)Structural and Mechanical Properties of Ti-Containing Diamond-Like Carbon Films Deposited by Filtered Cathodic Vacuum Arc Thin Solid Films 408 183-187
[6]  
Ha PCT(2004)Phenomena in Microwear Experiments on Metal-Free and Metal-Containing Diamond-Like Carbon Coatings: Friction Wear Fatigue and Plastic Deformation Surf. Coat. Technol. 177 453-458
[7]  
McKenzie DR(2004)DLC Based Coatings Prepared by Reactive DC Magnetron Sputtering Thin Solid Films 447 142-147
[8]  
Bilek MMM(2007)Thermal Stability of Nanocomposite CrC/a-C: H Thin Films Thin Solid Films 515 5411-5417
[9]  
Chu PK(2005)Microstructure and Tribological Properties of Magnetron Sputtered nc-TiC/aC Nanocomposite Surf. Coat. Technol. 198 206-211
[10]  
Ding XZ(2006)Structure and Mechanical Properties of W Incorporated Diamond-Like Carbon Films Prepared by a Hybrid Ion Beam Deposition Technique Carbon 44 1826-1832