We investigate with molecular dynamics the dynamic response of Cu bicrystals with a special asymmetric grain boundary (GB), (111)//(112)〈110〉, and its dependence on the loading directions. Shock loading is applied along the GB normal either from the left or right to the GB. Due to the structure asymmetry, the bicrystals demonstrate overall strong left-right loading dependence of its shock response, including compression wave features, compression and tensile plasticity, damage characteristics (e.g., spall strength), effective wave speeds and structure changes, except that spallation remains dominated by the GB damage regardless of the loading directions. The presence or absence of transient microtwinning also depends on the loading directio...
The influence of grain boundaries on the mechanical properties of poly-crystalline metals is well kn...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
This study investigated the high-strain rate deformation of bicrystal Cu nanopillars, using atomisti...
We investigate with molecular dynamics the dynamic response of Cu bicrystals with a special asymmetr...
We investigate the effect of asymmetric grain boundaries (GBs) on the shock response of Cu bicrystal...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
Using molecular dynamics simulations, we investigate shock-induced sliding of a set of (0 0 1) twist...
The dynamic evolution and interaction of defects under the conditions of shock loading in single cry...
We perform molecular dynamics simulations to investigate the shock response of idealized hexagonal c...
Monocrystalline copper with orientations of [001] and [221] was subjected to shock/recovery experime...
Molecular dynamics simulations were carried out to study the mechanical response of single crystal C...
We utilize molecular dynamics simulations to investigate the dynamic interaction between the grain b...
abstract: Understanding damage evolution, particularly as it relates to local nucleation and growth ...
A suite of plate-impact experiments have been conducted to determine the dominant factors in dynamic...
The influence of grain boundaries on the mechanical properties of poly-crystalline metals is well kn...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
This study investigated the high-strain rate deformation of bicrystal Cu nanopillars, using atomisti...
We investigate with molecular dynamics the dynamic response of Cu bicrystals with a special asymmetr...
We investigate the effect of asymmetric grain boundaries (GBs) on the shock response of Cu bicrystal...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
We perform molecular dynamics simulations of Cu bicrystals with two important grain boundaries (GBs)...
Using molecular dynamics simulations, we investigate shock-induced sliding of a set of (0 0 1) twist...
The dynamic evolution and interaction of defects under the conditions of shock loading in single cry...
We perform molecular dynamics simulations to investigate the shock response of idealized hexagonal c...
Monocrystalline copper with orientations of [001] and [221] was subjected to shock/recovery experime...
Molecular dynamics simulations were carried out to study the mechanical response of single crystal C...
We utilize molecular dynamics simulations to investigate the dynamic interaction between the grain b...
abstract: Understanding damage evolution, particularly as it relates to local nucleation and growth ...
A suite of plate-impact experiments have been conducted to determine the dominant factors in dynamic...
The influence of grain boundaries on the mechanical properties of poly-crystalline metals is well kn...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
This study investigated the high-strain rate deformation of bicrystal Cu nanopillars, using atomisti...