N-Oleoyl Sarcosine as an Engine Oil Friction Modifier, Part 2: Elucidation of Friction-Reducing Mechanism at Room Temperature Focusing on Contribution of NOS in NOS+ZDDP Mixture
Author:
Affiliation:
1. Department of Mechanical Engineering and Science, Graduate School of Engineering, Kyoto University
2. Institute of Engineering Thermophysics, Chinese Academy of Sciences
3. Lubricants R&D Dept., ENEOS Corporation
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/17/3/17_227/_pdf
Reference24 articles.
1. [1] Tasdemir, H. A., Wakayama, M., Tokoroyama, T., Kousaka, H., Umehara, N., Mabuchi, Y. and Higuchi, T., “Ultra-Low Friction of Tetrahedral Amorphous Diamond-Like Carbon (ta-C DLC) under Boundary Lubrication in Poly Alpha-Olefin (PAO) with Additives,” Tribology International, 65, 2013, 286–294.
2. [2] Tasdemir, H. A., Wakayama, M., Tokoroyama, T., Kousaka, H., Umehara, N., Mabuchi, Y. and Higuchi, T., “Wear Behaviour of Tetrahedral Amorphous Diamond-Like Carbon (ta-C DLC) in Additive Containing Lubricants,” Wear, 307, 1–2, 2013, 1–9.
3. [3] Taylor, L. J. and Spikes, H. A., “Friction-Enhancing Properties of ZDDP Antiwear Additive: Part I—Friction and Morphology of ZDDP Reaction Films,” Tribology Transactions, 46, 3, 2003, 303–309.
4. [4] Cyriac, F., Yi, T. X., Poornachary, S. K. and Chow, P. S., “Effect of Temperature on Tribological Performance of Organic Friction Modifier and Anti-Wear Additive: Insights from Friction, Surface (ToF-SIMS and EDX) and Wear Analysis,” Tribology International, 157, 2021, 106896.
5. [5] Okubo, H., Watanabe, S., Tadokoro, C. and Sasaki, S., “Effects of Concentration of Zinc Dialkyldithiophosphate on the Tribological Properties of Tetrahedral Amorphous Carbon Films in Presence of Organic Friction Modifiers,” Tribology International, 94, 2016, 446–457.
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