The propagation of shock waves through polycrystalline iron is explored by large-scale atomistic simulations. For large enough shock strengths the passage of the wave causes the body-centered-cubic phase to transform into a close-packed phase with most structure being isotropic hexagonal-close-packed (hcp) and, depending on shock strength and grain orientation, some fraction of face-centered-cubic (fcc) structure. The simulated shock Hugoniot is compared to experiments. By calculating the extended x-ray absorption fine structure (EXAFS) directly from the atomic configurations, a comparison to experimental EXAFS measurements of nanosecond-laser shocks shows that the experimental data is consistent with such a phase transformation. However, t...
In situ x-ray diffraction studies of iron under shock conditions confirm unambiguously a phase chang...
In situ X-ray diffraction allows the determination of the structure of transient states of matter. W...
In situ X-ray diffraction allows the determination of the structure of transient states of matter. W...
We report on large-scale non-equilibrium atomistic simulations of shock-induced transformations in p...
At a pressure of around 13 GPa iron undergoes a structural phase transition from the bcc to the hexa...
Strong shock waves create not only plasticity in Fe, but also phase transform the material from its ...
At a pressure of around 13 GPa iron undergoes a structural phase transition from the bcc to the hexa...
Multimillion atom non-equilibrium molecular dynamics simulations for shock compressed iron are analy...
Large-scale nonequilibrium molecular dynamics (MD) simulations of shock waves in nanocrystalline iro...
Strong shock waves create not only plasticity in Fe, but also phase transform the material from its ...
Intense shock waves may lead to spallation of the sample. Recent experiments show differences of sho...
AbstractThe influences of micro-structures of materials on shock wave have long been recognized, but...
Recent published work has shown that the phase change of shock-compressed iron along the [001] direc...
The past few years have seen a rapid growth in the development and exploitation of X-ray diffraction...
In situ x-ray diffraction studies of iron under shock conditions confirm unambiguously a phase chang...
In situ x-ray diffraction studies of iron under shock conditions confirm unambiguously a phase chang...
In situ X-ray diffraction allows the determination of the structure of transient states of matter. W...
In situ X-ray diffraction allows the determination of the structure of transient states of matter. W...
We report on large-scale non-equilibrium atomistic simulations of shock-induced transformations in p...
At a pressure of around 13 GPa iron undergoes a structural phase transition from the bcc to the hexa...
Strong shock waves create not only plasticity in Fe, but also phase transform the material from its ...
At a pressure of around 13 GPa iron undergoes a structural phase transition from the bcc to the hexa...
Multimillion atom non-equilibrium molecular dynamics simulations for shock compressed iron are analy...
Large-scale nonequilibrium molecular dynamics (MD) simulations of shock waves in nanocrystalline iro...
Strong shock waves create not only plasticity in Fe, but also phase transform the material from its ...
Intense shock waves may lead to spallation of the sample. Recent experiments show differences of sho...
AbstractThe influences of micro-structures of materials on shock wave have long been recognized, but...
Recent published work has shown that the phase change of shock-compressed iron along the [001] direc...
The past few years have seen a rapid growth in the development and exploitation of X-ray diffraction...
In situ x-ray diffraction studies of iron under shock conditions confirm unambiguously a phase chang...
In situ x-ray diffraction studies of iron under shock conditions confirm unambiguously a phase chang...
In situ X-ray diffraction allows the determination of the structure of transient states of matter. W...
In situ X-ray diffraction allows the determination of the structure of transient states of matter. W...