Adhesive sliding with a nominal point contact: Postpredictive analysis

Quasi-static sliding contact of an axisymmetric convex rigid solid with an adhesive incompressible polymer layer bonded to a rigid base is considered. As generalizations of the state-of-the-art theories of interplay between adhesion and friction, the JKR (Johnson–Kendall–Roberts)-type so-called peel...

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Veröffentlicht in:International journal of engineering science 2024-07, Vol.200, p.104055, Article 104055
Hauptverfasser: Argatov, I.I., Lyashenko, I.A., Popov, V.L.
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Sprache:eng
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Zusammenfassung:Quasi-static sliding contact of an axisymmetric convex rigid solid with an adhesive incompressible polymer layer bonded to a rigid base is considered. As generalizations of the state-of-the-art theories of interplay between adhesion and friction, the JKR (Johnson–Kendall–Roberts)-type so-called peeling and sliding models are developed and applied for analyzing a set of experimental data for spherical indenters of various radii, which is available in the literature. A special focus is placed on the acquisition of the model parameters from experimental data in the case of a nominal point contact. The postpredictive analysis of the obtained scaled results indicates the existence of a three-stage adhesive attachment-stick/peeling/sliding periodic instability.
ISSN:0020-7225
1879-2197
DOI:10.1016/j.ijengsci.2024.104055