Computational Methods for Detection of Microgeometry Changes in Tribological Surfaces
Author:
Affiliation:
1. SKF Research and Technology Development
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/17/3/17_196/_pdf
Reference13 articles.
1. [1] Oila, A. and Bull, S. J., “Assessment of the Factors Influencing Micropitting in Rolling/Sliding Contacts,” Wear, 258, 10, 2005, 1510-1524.
2. [2] Vrcek, A., Hultqvist, T., Baubet, Y., Björling, M., Marklund, P. and Larsson, R., “Micro-Pitting and Wear Assessment of Engine Oils Operating under Boundary Lubrication Conditions,” Tribology International, 129, 2019, 338-346.
3. [3] Prajapati, D. K. and Tiwari, M., “Experimental Analysis of Contact Fatigue Damage Using Fractal Methodologies,” Wear, 450-451, 2020, 203262.
4. [4] Britton, W. M., Clarke, A. and Evans, H. P., “A Novel Method for Automatic Detection of Incipient Micropitting in Ground Surfaces,” Tribology International, 159, 2021, 106959.
5. [5] Morales-Espejel, G. E. and Brizmer, V., “Micropitting Modelling in Rolling–Sliding Contacts: Application to Rolling Bearings,” Tribology Transactions, 54, 4, 2011, 625-643.
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