We explore whether the continuum scaling behavior of the fracture energy of metals extends down to the atomistic level. We use an embedded atom method (EAM) model of Ni, thus bypassing the need to model strain-gradient plasticity at the continuum level. The calculations are performed with a number of different 3D periodic size cells using standard molecular dynamics (MD) techniques. A void nucleus of a single vacancy is placed in each cell and the cell is then expanded through repeated NVT MD increments. For each displacement, we then determine which cell size has the lowest energy. The optimal cell size and energy bear a power-law relation to the opening displacement that is consistent with continuum estimates based on strain-gradient plas...
Methodologies for understanding the plastic deformation mechanisms related to crack propagation at t...
We introduce a lattice model able to describe damage and yielding in heterogeneous materials ranging...
We derive optimal scaling laws for the macroscopic fracture energy of polymers failing by crazing. W...
We explore whether the continuum scaling behavior of the fracture energy of metals extends down to t...
This work is concerned with the derivation of optimal scaling laws, in the sense of matching lower a...
We perform an optimal-scaling analysis of ductile fracture in metals. We specifically consider the d...
Energy dissipation by dislocation plasticity in metals provides the resistance against crack growth ...
Several efforts that are aimed at understanding the plastic deformation mechanisms related to crack ...
Modeling fracture and failure of material is a complex phenomenon that needs atomic-scale understand...
Molecular dynamics simulations of single crystal nickel were performed to analyze the influence of s...
Simulation of ductile fracture at the atomic scale reveals many aspects of the fracture process incl...
In contrast to the great success at the macroscale, fracture mechanics theory fails to describe the ...
Simulation of ductile fracture at the atomic scale reveals many aspects of the fracture process incl...
We here reveal the initiation of ductile failure in metals at the nanometer scale by molecular dynam...
Ductile fracture generally relates to microscopic voiding and to strain localization in metallic mat...
Methodologies for understanding the plastic deformation mechanisms related to crack propagation at t...
We introduce a lattice model able to describe damage and yielding in heterogeneous materials ranging...
We derive optimal scaling laws for the macroscopic fracture energy of polymers failing by crazing. W...
We explore whether the continuum scaling behavior of the fracture energy of metals extends down to t...
This work is concerned with the derivation of optimal scaling laws, in the sense of matching lower a...
We perform an optimal-scaling analysis of ductile fracture in metals. We specifically consider the d...
Energy dissipation by dislocation plasticity in metals provides the resistance against crack growth ...
Several efforts that are aimed at understanding the plastic deformation mechanisms related to crack ...
Modeling fracture and failure of material is a complex phenomenon that needs atomic-scale understand...
Molecular dynamics simulations of single crystal nickel were performed to analyze the influence of s...
Simulation of ductile fracture at the atomic scale reveals many aspects of the fracture process incl...
In contrast to the great success at the macroscale, fracture mechanics theory fails to describe the ...
Simulation of ductile fracture at the atomic scale reveals many aspects of the fracture process incl...
We here reveal the initiation of ductile failure in metals at the nanometer scale by molecular dynam...
Ductile fracture generally relates to microscopic voiding and to strain localization in metallic mat...
Methodologies for understanding the plastic deformation mechanisms related to crack propagation at t...
We introduce a lattice model able to describe damage and yielding in heterogeneous materials ranging...
We derive optimal scaling laws for the macroscopic fracture energy of polymers failing by crazing. W...