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Updated: Apr 6, 2026

Experimental Multiscale Methodology for Predicting Material Fouling Resistance
Applicability of Macroscopic Wear and Friction Laws on the Atomic Length Scale
S J Eder1, G Feldbauer1,2, D Bianchi1
1Austrian Center of Competence for Tribology, AC2T research GmbH, Viktor-Kaplan-Straße 2, 2700 Wiener Neustadt, Austria.
Abstract:
Using molecular dynamics, we simulate the abrasion process of an atomically rough Fe surface with multiple hard abrasive particles. By quantifying the nanoscopic wear depth in a time-resolved fashion, we show that Barwell's macroscopic wear law can be applied at the atomic scale. We find that in this multiasperity contact system, the Bowden-Tabor term, which describes the friction force as a function of the real nanoscopic contact area, can predict the kinetic friction even when wear is involved. From this the Derjaguin-Amontons-Coulomb friction law can be recovered, since we observe a linear dependence of the contact area on the applied load in accordance with Greenwood-Williamson contact mechanics.
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