most citedRigid Clumps in the MercuryDPM Particle Dynamics Code

1 citations · 2 across the 7 of their papers we have counts for

collaborators

7 papers

cond-mat.soft2024

Alignment-induced depression and shear thinning of anisotropic granular media

Huzaif Rahim, Vasileios Angelidakis, Thorsten Pöschel +1

When granular materials of shape-anisotropic grains are sheared in a split-bottom shear cell, a localized shear band is formed with a depression at its center. This effect is close…

cond-mat.soft2024

Combined thermal and particle shape effects on powder spreading in additive manufacturing via discrete element simulations

Sudeshna Roy, Hongyi Xiao, Vasileios Angelidakis +1

The thermal and mechanical behaviors of powders are important for various additive manufacturing technologies. For powder bed fusion, capturing the temperature profile and the pack…

cond-mat.soft2023

SPIRAL: An Efficient Algorithm for the Integration of the Equation of Rotational Motion

Carlos Andrés del Valle, Vasileios Angelidakis, Sudeshna Roy +2

We introduce Spiral, a third-order integration algorithm for the rotational motion of extended bodies. It requires only one force calculation per time step, does not require quater…

cond-mat.soft2023

Shear zones in granular mixtures of hard and soft particles with high and low friction

Aditya Pratap Singh, Vasileios Angelidakis, Thorsten Pöschel +1

Granular materials show inhomogeneous flows characterized by strain localization. When strain is localized in a sheared granular material, rigid regions of a nearly undeformed stat…

math.NA20231 cited

Rigid Clumps in the MercuryDPM Particle Dynamics Code

Igor Ostanin, Vasileios Angelidakis, Timo Plath +3

Discrete particle simulations have become the standard in science and industrial applications exploring the properties of particulate systems. Most of such simulations rely on the…

cond-mat.soft20231 cited

DEM simulation of the powder application in powder bed fusion

Vasileios Angelidakis, Michael Blank, Eric J. R. Parteli +4

The packing behavior of powders is significantly influenced by various types of inter-particle attractive forces, including adhesion and non-bonded van der Waals forces [1, 2, 3, 4…