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Inelastic binary collisions of particles with normal and tangential restitution coefficients are considered.
The solid pressure and viscosity are obtained in terms of the normal and tangential restitution coefficients and empirical friction constants.
Two coefficients, normal restitution coefficient and tangential restitution coefficient, are used to characterize the collisions of particles.
The new approach to defining boundary conditions for a solid phase, which is based on the tangential restitution coefficient, has been applied.
For a non-orthogonal contact as shown in Fig. 4, the behavior of the center of the particle after the rebound can be defined through the normal (R n) and tangential restitution coefficients (R t) with Eqs.
Sliding and sticking mechanisms are distinguished in the binary collision model with the friction coefficient and coefficients of normal and tangential restitution.
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Collision integrals produced new expressions for energy dissipation involving tangential and normal restitution coefficients.
The tangential coefficient of restitution ranges between 0.3 and 0.8 and is related to the friction coefficient at the impact point, and is independent of the velocity and normal force.
This paper presents documentation on rock falls at five locations, in North America and Japan, involving impacts on rock, talus, colluvium, asphalt and concrete, for which values of the normal and tangential coefficients of restitution have been calculated.
The normal and tangential coefficients of restitution were quantified based on the modified kinematic equations presented, and the effects of two factors (the impact and rebound angle of maize) on the COR values were analyzed with impact angles ranging from 30° to 90°.
The model results of the tangential coefficient of restitution, rebound angles of the contact point and center of mass are validated with the experimental data on frictional-elastic collisions of Kharaz et al. (Powder Technol. 120 (2001) 281), showing, despite the simplicity of the considered model, an excellent agreement.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com