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Tribofilm Formation of Simulated Gear Contact Along the Line of Action
by
Bayat, Reza
, Lehtovaara, Arto
in
Chemistry and Materials Science
/ Contact pressure
/ Corrosion and Coatings
/ Friction
/ Lubricants & lubrication
/ Materials Science
/ Nanotechnology
/ Original Paper
/ Physical Chemistry
/ Pressure distribution
/ Simulation
/ Sliding contact
/ Surface roughness
/ Surfaces and Interfaces
/ Theoretical and Applied Mechanics
/ Thin Films
/ Tribology
/ Velocity
/ Viscosity
2021
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Tribofilm Formation of Simulated Gear Contact Along the Line of Action
by
Bayat, Reza
, Lehtovaara, Arto
in
Chemistry and Materials Science
/ Contact pressure
/ Corrosion and Coatings
/ Friction
/ Lubricants & lubrication
/ Materials Science
/ Nanotechnology
/ Original Paper
/ Physical Chemistry
/ Pressure distribution
/ Simulation
/ Sliding contact
/ Surface roughness
/ Surfaces and Interfaces
/ Theoretical and Applied Mechanics
/ Thin Films
/ Tribology
/ Velocity
/ Viscosity
2021
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Do you wish to request the book?
Tribofilm Formation of Simulated Gear Contact Along the Line of Action
by
Bayat, Reza
, Lehtovaara, Arto
in
Chemistry and Materials Science
/ Contact pressure
/ Corrosion and Coatings
/ Friction
/ Lubricants & lubrication
/ Materials Science
/ Nanotechnology
/ Original Paper
/ Physical Chemistry
/ Pressure distribution
/ Simulation
/ Sliding contact
/ Surface roughness
/ Surfaces and Interfaces
/ Theoretical and Applied Mechanics
/ Thin Films
/ Tribology
/ Velocity
/ Viscosity
2021
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Tribofilm Formation of Simulated Gear Contact Along the Line of Action
Journal Article
Tribofilm Formation of Simulated Gear Contact Along the Line of Action
2021
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Overview
In this paper, an experimental simulation method was used for evaluating the tribofilm formation in rolling/sliding contact at different points in the line of action. A ball-on-disc test method was employed by which the pressure and slide to roll ratio of gear contact could be simulated. In order to reach a general conclusion, four different oils and two surface roughness were involved in the experiments. The tribofilm evolution was captured using spacer layer interferometry method, and the correlation of tribofilm with the location at the line of action was studied. Results showed that there is a threshold pressure for the tribofilm formation around which the tribofilm growth rate is maximum. Above this threshold pressure, the tribofilm formation is not stable, and the wear is dominant. Below this threshold pressure, the tribofilm growth rate rises by increasing the pressure and the gear contact is safely protected by a stable tribofilm.
Graphic Abstract
Publisher
Springer US,Springer Nature B.V
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