Molecular-dynamics simulations of the classic Taylor experiment are performed to investigate some general trends of impact fragmentation at ultrahigh striking velocities. The striking velocities of flatended, monocrystalline, nanoscale pillars (nanoprojectiles) range from 0.34 km/s (Mach 1) to 30 km/s to explore qualitative effects on the fragment mass distribution. These atomistic simulations offer insight into evolution of the fragment distribution and its dependence upon the striking velocity. According to the simulation results, distribution of the fragment masses following hypervelocity impacts of energy sufficient to ensure that the fragmentation problem is statistically well posed, is well represented by the bilinear (b...
The penetration process has attracted increasing attention due to its engineering and scientific val...
The penetration process has attracted increasing attention due to its engineering and scientific val...
AbstractThis paper presents numerical simulations of hypervelocity impacts of 0.5-mm steel spheres i...
A series of molecular-dynamics simulations of the classic Taylor impact test is performed by using a...
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...
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 brittle fragmentation of spheres is studied numerically by a 3D Discrete Element Model. Large sc...
Artículo de publicación ISIAn atomic-level simulation of the collisions between a nano-projectile ag...
AbstractWe present ballistic and fragmentation data for brittle, granular aluminum spheres following...
We present molecular-dynamics simulations of cratering induced by projectiles containing N ∼= 10–106...
The penetration process has attracted increasing attention due to its engineering and scientific val...
The penetration process has attracted increasing attention due to its engineering and scientific val...
AbstractThis paper presents numerical simulations of hypervelocity impacts of 0.5-mm steel spheres i...
A series of molecular-dynamics simulations of the classic Taylor impact test is performed by using a...
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...
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 brittle fragmentation of spheres is studied numerically by a 3D Discrete Element Model. Large sc...
Artículo de publicación ISIAn atomic-level simulation of the collisions between a nano-projectile ag...
AbstractWe present ballistic and fragmentation data for brittle, granular aluminum spheres following...
We present molecular-dynamics simulations of cratering induced by projectiles containing N ∼= 10–106...
The penetration process has attracted increasing attention due to its engineering and scientific val...
The penetration process has attracted increasing attention due to its engineering and scientific val...
AbstractThis paper presents numerical simulations of hypervelocity impacts of 0.5-mm steel spheres i...