Radical Scavenging Mechanism and Antioxidant Effect of Fullerenes in Lubricating Oils (Part 3)
Author:
Affiliation:
1. Graduate School of Engineering, University of Fukui
2. Technical Division, University of Fukui
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/18/7/18_534/_pdf
Reference30 articles.
1. [1] Pfaendtner J, Broadbelt LJ. Mechanistic modeling of lubricant degradation. 1. Structure-reactivity relationships for free-radical oxidation. Industrial & Engineering Chemistry Research. 2008;47(9): 2886-2896.
2. [2] Heuberger R, Rossi A, Spencer ND. Pressure dependence of ZnDTP tribochemical film formation: A combinatorial approach. Tribology Letters. 2007;28: 209-210.
3. [3] Fujii A, Fujiwara A, Nagakari M, Nagatomi E. Study of ZnDTP degradation controlled by low treatrate metallic detergents and the mechanism. Journal of Japanese Society of Tribologists. 2016;61(9): 615-626 (in Japanese).
4. [4] Minami I, Mori S, Isogai Y, Hiyoshi S, Inayama T, Nakayama S. Molecular design of environmentally adapted lubricants: Antiwear additives derived from natural amino acids. Tribology Transactions. 2010;53(5): 713-721.
5. [5] Katafuchi T, Shimizu N. Evaluation of the antiwear and friction reduction characteristics of mercaptocarboxylate derivatives as novel phosphorous-free additives. Tribology International. 2007;40(7): 1017-1024.
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