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A Journal of Russian Academy of Sciences
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IssuesArchive of Issues2022-7pp.1701-1716

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I.A. Soldatenkov, "Contact with Intermolecular Interaction for a Viscoelastic Layer (Self-Consistent Approach): Energy Dissipation under Indentation and Friction Force," Mech. Solids. 57 (7), 1701-1716 (2022)
Year 2022 Volume 57 Number 7 Pages 1701-1716
DOI 10.3103/S0025654422070160
Title Contact with Intermolecular Interaction for a Viscoelastic Layer (Self-Consistent Approach): Energy Dissipation under Indentation and Friction Force
Author(s) I.A. Soldatenkov (Ishlinsky Institute for Problems in Mechanics, Russian Academy of Sciences, Moscow, 119526, Russia, iasoldat@hotmail.com)
Abstract A contact between an infinitely extended plane indenter and a viscoelastic layer in the scope of a self-consistent approach according to Derjaguin under the surface application (traditional formulation) and bulk application (refined formulation) of intermolecular interaction forces is considered. Using the first law of thermodynamics, the problem of determining the energy dissipation in a visco- elastic layer is solved for a preset indenter approach/retraction law. Based on this solution, friction force under sliding a rough counterbody over a viscoelastic layer has been calculated. The results of the calculations indicate a significant effect of abrupt changing in the contact gap over time exerted on the energy dissipation and the friction force.
Keywords contact problem, viscoelastic layer, intermolecular interaction, energy dissipation, friction
Received 31 December 2021Revised 31 March 2022Accepted 05 April 2022
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