Rigorous models of elasto-plastic contact deformation are time-consuming in numerical calculations for the Distinct Element Method and quite often unnecessary to represent actual contact deformation of common particulate systems. In this work a simple linear elastic-plastic-adhesive contact model for spherical particles is proposed, whereby the loading cycle is a linear plastic deformation and the unloading is elastic with a higher stiffness compared to the plastic deformation. The adhesive behaviour is considered once the unloading contact force reaches the pull-off force, at which point the contact deforms with negative elastic-adhesive stiffness. In order to account for increase in adhesion due to plastic deformation, the pull-off force ...
In this paper the contact problem of a rigid sphere against an elastic plastic sphere and a spherica...
The contact force development for two types of polymeric elastoplastic particles subjected to differ...
The computation time of Discrete Element Method (DEM) simulations increases exponentially when parti...
In this two part series, we present a contact model able to capture the response of interacting adhe...
An improved linear model is developed for elasto-plastic and adhesive contact. New correlations are ...
In Part I of this two part series, we presented a multi-neighbor dependent contact model for adhesiv...
The unloading behaviour of adhesion-free elastic-perfectly plastic spheres following contact present...
Sticking of adhesive spherical particles under normal impact is investigated numerically by applying...
We propose a simple elastic-plastic contact model by considering the interaction of two spheres in t...
Abstract The interaction between realistic visco-elasto-plastic and adhesive meso-particles is the s...
Several continuum mechanics models of the adhesion between elastic spheres have found application to...
Granular materials can be studied in a split-bottom ring shear cell geometry, where they show wide s...
The interaction between visco-elasto-plastic and adhesive particles is the subject of this study, wh...
Triaxial compression of elastoplastic particles was studied with numerical and analytical methods in...
Bradley (1932) showed that if two rigid spheres of radii R1 and R2 are placed in contact, they will ...
In this paper the contact problem of a rigid sphere against an elastic plastic sphere and a spherica...
The contact force development for two types of polymeric elastoplastic particles subjected to differ...
The computation time of Discrete Element Method (DEM) simulations increases exponentially when parti...
In this two part series, we present a contact model able to capture the response of interacting adhe...
An improved linear model is developed for elasto-plastic and adhesive contact. New correlations are ...
In Part I of this two part series, we presented a multi-neighbor dependent contact model for adhesiv...
The unloading behaviour of adhesion-free elastic-perfectly plastic spheres following contact present...
Sticking of adhesive spherical particles under normal impact is investigated numerically by applying...
We propose a simple elastic-plastic contact model by considering the interaction of two spheres in t...
Abstract The interaction between realistic visco-elasto-plastic and adhesive meso-particles is the s...
Several continuum mechanics models of the adhesion between elastic spheres have found application to...
Granular materials can be studied in a split-bottom ring shear cell geometry, where they show wide s...
The interaction between visco-elasto-plastic and adhesive particles is the subject of this study, wh...
Triaxial compression of elastoplastic particles was studied with numerical and analytical methods in...
Bradley (1932) showed that if two rigid spheres of radii R1 and R2 are placed in contact, they will ...
In this paper the contact problem of a rigid sphere against an elastic plastic sphere and a spherica...
The contact force development for two types of polymeric elastoplastic particles subjected to differ...
The computation time of Discrete Element Method (DEM) simulations increases exponentially when parti...