The conditions necessary for the formation of dissipative structures in tribo-films on friction surfaces that decrease the wear rate

Author:

Gershman I. S.1,Fox-Rabinovich G. S.2,Gershman E. I.3,Mironov A. E.1,Endrino J. L.4

Affiliation:

1. Joint Stock Company Railway Research Institute, Moscow State Technological University (MSUT STANKIN)

2. McMaster Manufacturing Research Institute (MMRI), McMaster University

3. LLC «TransTriboLogic»

4. Universidad Loyola Andalucia

Abstract

Abstract Tribo-films form on the surface as a result of friction and wear. The wear rate is dependant on the frictional processes, which develop within these tribo-films. Physical-chemical processes with negative entropy production enhance reduction of the wear rate. Such processes intensively develop once self-organization with dissipative structure formation is initiated. This process leads to significant wear rate reduction. Self-organization can only occur after the system loses thermodynamic stability. This article investigates the behavior of entropy production which results in the loss of thermodynamic stability in order to establish the prevalence of friction modes required for self-organization. Tribo-films with dissipative structures form on the friction surface as a consequence of a self-organization process, resulting in an overall wear rate reduction. It has been demonstrated that a tribo-system begins to lose its thermodynamic stability once it reaches the point of maximum entropy production during the running-in stage.

Publisher

Research Square Platform LLC

Reference52 articles.

1. Bowden, F.P.; Tabor, D. The Friction and Lubrication of Solids; Clarendon Press: Oxford, UK, 1986

2. Tabor, D. Friction as dissipative process. In Fundamentals of Friction: Macroscopic and Microscopic Processes; Singer, I.L., Pollock, H.M., Eds.; Kluwer Academic Publishers: Dordrecht, The Netherlands, 1992; Volume 220, pp. 3–24.

3. Charpy, G. Study of white alloys called antifriction. Metallographist 1899, 2, 9–55. 22. Charpy, G. Les alliages blancs, dits antifriction. Bull. Soc. d’Encouragement Pour l’Industrie Natl. 1898, 3, 670– 707.

4. An entropy-based model of plastic deformation energy dissipation in sliding;Klamecki BE;Wear,1984

5. A thermodynamic model of friction;Klamecki BE;Wear 1980

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