arXiv · 2411.07332
Rubber wear: experiment and theory
Abstract
We study the wear rate (mass loss per unit sliding distance) of a tire tread rubber compound sliding on concrete paver surfaces under dry and wet conditions, at different nominal contact pressures of $\sigma_0 = 0.12$, $0.29$, and $0.43 \ {\rm MPa}$, and sliding velocities ranging from $v= 1 \ {\rm \mu m/s}$ to $1 \ {\rm cm/s}$. We find that the wear rate is proportional to the normal force and remains independent of the sliding speed. Sliding in water and soapy water results in significantly lower wear rates compared to dry conditions. The experimental data are analyzed using a theory that predicts wear rates and wear particle size distributions consistent with the experimental observations.
Explore related subjects
Keep this discovery
B. N. J. Persson, R. Xu, N. Miyashita. 2024-11-11. Rubber wear: experiment and theory. https://arxiv.org/abs/2411.07332
Cite the original work for its findings. Save a collection to share your selection of sources.