Nonuniqueness of Tangential and Kinematic Restitution in Frictional Oblique Particle Impacts
arXiv:2608.06675
Abstract
We systematically investigate the different coefficients of restitution of a dissipative, frictional disc as a function of the impact angle , the friction coefficient and initial rotation . We observe a non-monotonic, non-linear behaviour of and with a clear minimum at -dependent values of and a convergence for all at large , bounded by the cases of pure rolling and pure sliding. Changing the dissipative normal interaction affects the convergence at large and leads to a convergence at low . The presence of initial angular velocity can significantly alter the functional behaviour of at steep impacts and slightly change the magnitude of , with friction playing only a minor role. Overall, our results indicate that any specific value of or is highly situational and can simultaneously describe entirely different contact configurations.
5 pages, 5 figures