Effect of Degree of Unsaturation in Vegetable Oils on Friction Properties of DLC Coatings
Author:
Affiliation:
1. Material and Machanical Technology Division, Kanagawa Institute of Industrial Science and Technology
2. Institute of Innovation Research, Tokyo Institute of Technology
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/16/4/16_210/_pdf
Reference10 articles.
1. [1] Kalin, M. and Simic, R., “Atomic Force Microscopy and Tribology Study of the Adsorption of Alcohols on Diamond-Like Carbon Coatings and Steel,” Applied Surface Science, 271, 2013, 317-328.
2. [2] Kano, M., Yasuda, Y., Okamoto, Y., Mabuchi, Y., Hamada, T., Ueno, T., Ye, J., Konishi, S., Takeshima, S., Martin, J. M., De Barros Bouchet, M.I. and Le Mognee, T., “Ultralow Friction of DLC in Presence of Glycerol Mono-Oleate (GMO),” Tribology Letters, 18, 2, 2005, 245-251.
3. [3] Kano, M., Martin, J. M., Yoshida, K. and De Barros Bouchet, M. I., “Super-Low Friction of Ta-C Coating in Presence of Oleic Acid,” Friction, 2, 2, 2014, 156-163.
4. [4] De Barros Bouchet, M. I., Martin, J. M., Avila, J., Kano, M., Yoshida, K., Tsuruda, T., Bai, S., Higuchi, Y., Ozawa, N., Kubo, M. and Asensio, M. C., “Diamond-Like Carbon Coating under Oleic Acid Lubrication: Evidence for Graphene Oxide Formation in Superlow Friction,” Scientific Reports, 7, 2017, 46394.
5. [5] Carrell, J., Slatter, T., Little, U. and Lewis, R., “Combining DLC, Shot Blasting, Chemical Dip and Nano Fullerene Surface Treatments to Reduce Wear and Friction When Used with Bio-Lubricants in Automotive Contacts,” SAE Technical Papers, 2017-01-0878, 2017.
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