When compressed, a metallic specimen will generally experience changes to its crystallographic texture due to plasticity-induced rotation. Ultrafast x-ray diffraction techniques make it possible to measure rotation of this kind in targets dynamically compressed over nanosecond timescales to the kind of pressures ordinarily encountered in planetary interiors. The axis and the extent of the local rotation can provide hints as to the combination of plasticity mechanisms activated by the rapid uniaxial compression, thus providing valuable information about the underlying dislocation kinetics operative during extreme loading conditions. We present large-scale molecular dynamics simulations of shock-induced lattice rotation in three model crystal...
Advances in the ability to generate extremely high pressures in dynamic experiments such as at the N...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
When materials are shock compressed, they undergo changes in microstructure that act to relieve the ...
When materials are shock compressed, they undergo changes in microstructure that act to relieve the ...
Under shock compression it is believed that crystalline materials undergo complex, rapid, micro-stru...
The microstructural evolution of dynamically-compressed metals has been an area of active research f...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Ordinarily, the strength and plasticity properties of a metal are defined by dislocations—line defec...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Recent advances in the ability to generate extremes of pressure and temperature in dynamic experimen...
Despite a number of previous nonequilibrium molecular dynamics (MD) studies into plasticity in face-...
The response of solid matter to shock compression is complexified considerably by its strength, or i...
Advances in the ability to generate extremely high pressures in dynamic experiments such as at the N...
Advances in the ability to generate extremely high pressures in dynamic experiments such as at the N...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
When materials are shock compressed, they undergo changes in microstructure that act to relieve the ...
When materials are shock compressed, they undergo changes in microstructure that act to relieve the ...
Under shock compression it is believed that crystalline materials undergo complex, rapid, micro-stru...
The microstructural evolution of dynamically-compressed metals has been an area of active research f...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Ordinarily, the strength and plasticity properties of a metal are defined by dislocations—line defec...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understandi...
Recent advances in the ability to generate extremes of pressure and temperature in dynamic experimen...
Despite a number of previous nonequilibrium molecular dynamics (MD) studies into plasticity in face-...
The response of solid matter to shock compression is complexified considerably by its strength, or i...
Advances in the ability to generate extremely high pressures in dynamic experiments such as at the N...
Advances in the ability to generate extremely high pressures in dynamic experiments such as at the N...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...
Molecular dynamics (MD) simulations are used to model the compression under uniaxial strain of coppe...