Identification of the coefficient of sliding friction from an apparent non-Coulomb behavior between wood and steel

Journal Article (2024)
Author(s)

Y. Zheng (TU Delft - Mechanics and Physics of Structures)

Alessandro Cabboi (TU Delft - Mechanics and Physics of Structures)

Jan Willem Van de Kuilen (TU Delft - Bio-based Structures & Materials, Technische Universität München)

Research Group
Mechanics and Physics of Structures
DOI related publication
https://doi.org/10.1016/j.triboint.2024.110193
More Info
expand_more
Publication Year
2024
Language
English
Research Group
Mechanics and Physics of Structures
Volume number
200
Reuse Rights

Other than for strictly personal use, it is not permitted to download, forward or distribute the text or part of it, without the consent of the author(s) and/or copyright holder(s), unless the work is under an open content license such as Creative Commons.

Abstract

This study investigates the sliding friction fluctuations through hysteresis cycles, observed between a steel sphere and wood specimens of beech and spruce, by using a tribometer and a profilometer. At first, the tracked wear profiles revealed a correlation between the normal force variation and the surface waviness. However, the normal force variation alone was not able to explain the observed friction force fluctuation. Hence, to explain most of the observed non-Coulomb friction hysteresis behavior, the wear-scar interaction is taken into account through an optimization framework used for data post-processing and leading to an optimal friction coefficient. A comparative study showed similar values between the identified optimal friction coefficient, the mean and energy-based friction coefficients.