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Clarification of high wear resistance mechanism of ta-CNx coating under poly alpha-olefin (PAO) lubrication

机译:澄清在聚α-烯烃(PAO)润滑下ta-CNx涂层的高耐磨机理

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摘要

Tetrahedral amorphous carbon nitride (ta-CNx) is suitable for tribological application due to its excellent mechanical and adhesion properties. In this study, ta-CNx coatings with N/C ratios (0-11%) are deposited by ion beam assisted filtered arc deposition (IBA-FAD), and the tribological properties are investigated with a ball on-disk tribo-tester. The results show that nitrogen doping decreases the fraction of sp(3) bonding, hardness, Young's modulus and roughness. In oil ta-CNx presents slightly decreasing friction coefficient and improving wear resistance with the N/C ratio, indicating softer ta-CNx with better wear resistance. The lower surface roughness after friction of high nitrogen content ta-CNx makes it more likely to transit to mixed lubrication, resulting in lower contact load that can explain the better wear resistance.
机译:四面体无定形氮化碳(ta-CNx)具有出色的机械和粘合性能,因此适合摩擦学应用。在这项研究中,通过离子束辅助过滤电弧沉积(IBA-FAD)沉积具有N / C比(0-11%)的ta-CNx涂层,并使用球上摩擦试验仪研究了摩擦学性能。结果表明,氮掺杂降低了sp(3)键合的分数,硬度,杨氏模量和粗糙度。在油中,ta-CNx的摩擦系数略有降低,并且随着N / C比的提高而提高了耐磨性,表明ta-CNx较软,耐磨性更好。高氮含量的ta-CNx摩擦后的较低的表面粗糙度使其更可能转变为混合润滑,从而导致较低的接触载荷,这可以解释更好的耐磨性。

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