A series of molecular-dynamics simulations of the classic Taylor impact test is performed by using a flat-ended monocrystalline nanoscale projectile made of the Lennard-Jones two-dimensional solid. The nanoprojectile striking velocities range from 0.75 to 7 km/s. These atomistic simulations offer insight into nature of fragment distributions and evolution of state parameters. According to the simulation results, the cumulative distribution of fragment sizes in the course of this non-homogeneous fragmentation process for hypervelocity impacts appears to be well represented by the bimodalexponential distribution commonly observed during high-energy uniform fragmentation events. For more moderate impact velocities, the cumulative distribution ...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
In this chapter we present an atomic level study of nano-particle impact using molecular dynamics si...
Molecular-dynamics simulations of the classic Taylor experiment are performed to investigate some ...
Molecular dynamics simulations of the rigid-anvil collision test are performed by using a twodimensi...
Molecular dynamics simulations of the ballistic Taylor test are used to explore correlation between ...
Molecular dynamics simulations of the rigid-anvil collision test are performed to achieve the comple...
Abstract Molecular dynamics simulations of the ballistic Taylor test are used to explore correlation...
Artículo de publicación ISIAn atomic-level simulation of the collisions between a nano-projectile ag...
The focus of the present article is on the size effect of a transition region from the damaged to th...
This work investigates the difference in the fragmentation characteristics between the microscopic a...
This work investigates the difference in the fragmentation characteristics between the microscopic a...
The penetration process has attracted increasing attention due to its engineering and scientific val...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
The penetration process has attracted increasing attention due to its engineering and scientific val...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
In this chapter we present an atomic level study of nano-particle impact using molecular dynamics si...
Molecular-dynamics simulations of the classic Taylor experiment are performed to investigate some ...
Molecular dynamics simulations of the rigid-anvil collision test are performed by using a twodimensi...
Molecular dynamics simulations of the ballistic Taylor test are used to explore correlation between ...
Molecular dynamics simulations of the rigid-anvil collision test are performed to achieve the comple...
Abstract Molecular dynamics simulations of the ballistic Taylor test are used to explore correlation...
Artículo de publicación ISIAn atomic-level simulation of the collisions between a nano-projectile ag...
The focus of the present article is on the size effect of a transition region from the damaged to th...
This work investigates the difference in the fragmentation characteristics between the microscopic a...
This work investigates the difference in the fragmentation characteristics between the microscopic a...
The penetration process has attracted increasing attention due to its engineering and scientific val...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
The penetration process has attracted increasing attention due to its engineering and scientific val...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
In the present study molecular dynamics simulations were performed for collisions of nanoclusters wi...
In this chapter we present an atomic level study of nano-particle impact using molecular dynamics si...