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Ad Hoc Modeling of Rate-Dependent Adhesion in Indentation Relaxation Testing

Ivan ArgatovInstitut für Mechanik, Technische Universität Berlin, 10623 Berlin, GermanyI. A. LyashenkoInstitut für Mechanik, Technische Universität Berlin, 10623 Berlin, GermanyValentin L. PopovCenter of Advanced Studies in Mechanics, Tribology, Bio- and Nanotechnologies, Samarkand State University, Samarkand 140104, Uzbekistan
Materialsjournal2024en
ABI

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The phenomenon of rate-dependent adhesion has long been recognized as an intricate problem, and the so-far-developed physics and mechanics-based approaches resulted in analytical relations between the implicit form between the work of adhesion and the contact front velocity which are difficult to implement in practice. To address this issue in the framework of spherical indentation, the adhesion relaxation test in a nominal point contact is introduced to estimate the rate-dependent adhesion. Based on a stretched exponent approximation for the contact radius evolution with time, a relatively simple four-parameter model is proposed for the functional relation between the work of adhesion and the contact front velocity, and its fitting performance is compared to that of the known Greenwood-Johnson and Persson-Brener models.

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Koʻrsatkichlar — AkademScholar · Tez orada