Effect of carbon content on the structural, mechanical and corrosion properties of TiC films deposited using a HiPIMS discharge

材料科学 扫描电子显微镜 纳米压痕 高功率脉冲磁控溅射 腐蚀 涂层 冶金 纳米复合材料 碳钢 韧性 复合材料 纳米技术 薄膜 溅射 溅射沉积
作者
Hicham Larhlimi,Olayinka Oluwatosin Abegunde,Youssef Samih,Anas Ghailane,M. Makha,Jones Alami
出处
期刊:Surface & Coatings Technology [Elsevier BV]
卷期号:451: 129028-129028 被引量:19
标识
DOI:10.1016/j.surfcoat.2022.129028
摘要

TiC x thin films have been deposited on steel substrates using High Power Impulse Magnetron Sputtering (HiPIMS) under Ar-C 2 H 2 atmosphere. The effect of varying the acetylene content on the deposition process, and on the structural, mechanical and corrosion resistance properties was investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM), nanoindentation, scratch testing, potentiodynamic polarization, electrochemical impedance measurements (EIS), and salt spray. This study showed that an increase of the carbon ratio affected the deposited Ti C coatings morphology and mechanical properties, with hardness values reaching up to 25 GPa. The near-stoichiometric coating exhibited the highest hardness while maintaining improved toughness, resistance to plastic deformation and resistance against crack propagation thanks to their nanocomposite structure. In contrast, corrosion tests showed that the understoichiometric coatings exhibited the best corrosion resistance in a 3.5 % wt NaCl medium. The drop of the corrosion performances of TiC x coatings deposited at higher acetylene flow rate was linked to a growth-related defects extending throughout the coating thickness, formed due to micro-droplet ejection from the target as evidenced by SEM analysis. • A maximum hardness was obtained for slightly over-stoichiometric TiC x coating. • The nanocomposite structure helped in improving the film's mechanical properties. • Understoichiometric coatings showed the best anti-corrosion performances in NaCl medium. • The density and size of growth-related defects increase with increasing C 2 H 2 . • Growth-related defects significantly reduced the films' anti-corrosion protection.
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