Relationship between Nano/Macrofriction Behaviors and Mechanical Properties of Tribofilms: An Investigation Using Multidimensional Nanoindentation Equipment
Author:
Affiliation:
1. Department of Mechanical Engineering, Graduate School of Tokyo University of Science
2. Current affiliation: Department of Chemistry, Graduate School of Osaka University
3. Department of Mechanical Engineering, Tokyo University of Science
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/18/5/18_193/_pdf
Reference15 articles.
1. [1] Omura A, Korenaga A, Mano H, Ohana T, Sugimura A, Mizuno A, Tanaka Y, Maeda M, Uchida K. Correlation between tribofilm formation and friction coefficient in continuously variable transmission at the initial stage of rubbing. Tribology Online. 2019;14(4): 208-213.
2. [2] Ono Y, Matsumoto K, Mihara Y. A study of the lubrication under impact loading - Experimental and analytical application to push belt CVTs. Tribology Online. 2019;14(2): 18-23.
3. [3] Narita K, Iwai T, Takekawa D. Lubricant additives for improving the performance of metal V-belt type CVTs. Tribology Online. 2012;7(3): 152-158.
4. [4] Narita K, Priest M. Boundary lubrication film formation from belt type CVT fluids. IPDS2006 Integrated Powertrain & Driveline Systems. 2006: 39-50.
5. [5] Manabe Y, Naganuma N. Effects of additives on metal-to-metal friction characteristics of belt CVT fluids. Tribology Online. 2008;3(2): 153-156.
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