Novel Method for Direct Observation of Friction Interfaces between SUJ2 Ball and Si3N4 Thin Film Using Scanning Electron Microscopy
Author:
Affiliation:
1. Department of Mechanical Engineering, Graduate School of Engineering, University of Hyogo
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/14/5/14_382/_pdf
Reference15 articles.
1. [1] Konicek, A. R., Grierson, D. S., Gilbert, P. U. P. A., Sawyer, W. G., Sumant, A. V. and Carpick, R. W., “Origin of Ultralow Friction and Wear in Ultrananocrystalline Diamond,” Physical Review Letters, 100, 23, 2008, 235502.
2. [2] Sun, Q., Wang, Z., Yin, B., Yang, J., Liu, J., Liu, Y., Cheng, J., Zhu, S. and Qiao, Z., “The Tribological Properties and Wear Mechanism of Copper Coated Graphite Doped Sialon Ceramic Composites at Wide Range Temperature from 25 to 800°C,” Tribology International, 123, 2018, 10–16.
3. [3] Kato, K., “Wear in Relation to Friction — A Review,” Wear, 241, 2, 2000, 151–157.
4. [4] Kinoshita, H., Kondo, M., Nishina, Y. and Fujii, M., “Anti-Wear Effect of Graphene Oxide in Lubrication by Fluorine-Containing Ionic Liquid for Steel,” Tribology Online, 10, 1, 2015, 91–95.
5. [5] Minatchy, G., Thomas, P., Bilas, P., Nomede-Martyr, N. and Romana, L., “Macro- and Nanotribological Properties of Graphite Tribofilms: Influence of the Sliding Interface,” Tribology Letters, 56, 3, 2014, 443–456.
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