Pressure-driven shock waves in solid materials can cause extreme damage and deformation. Understanding this deformation and the associated defects that are created in the material is crucial in the study of a wide range of phenomena, including planetary formation and asteroid impact sites, the formation of interstellar dust clouds, ballistic penetrators, spacecraft shielding and ductility in high-performance ceramics. At the lattice level, the basic mechanisms of plastic deformation are twinning (whereby crystallites with a mirror-image lattice form) and slip (whereby lattice dislocations are generated and move), but determining which of these mechanisms is active during deformation is challenging. Experiments that characterized lattice def...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
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...
The microstructural evolution of dynamically-compressed metals has been an area of active research f...
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...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
We have used femtosecond x-ray diffraction (XRD) to study laser-shocked fiber-textured polycrystalli...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
The response of solid matter to shock compression is complexified considerably by its strength, or i...
When compressed, a metallic specimen will generally experience changes to its crystallographic textu...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
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...
The microstructural evolution of dynamically-compressed metals has been an area of active research f...
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...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
We have used femtosecond x-ray diffraction (XRD) to study laser-shocked fiber-textured polycrystalli...
We have used femtosecond x-ray diffraction to study laser-shocked fiber-textured polycrystalline tan...
The response of solid matter to shock compression is complexified considerably by its strength, or i...
When compressed, a metallic specimen will generally experience changes to its crystallographic textu...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...
International audienceThe understanding of fracture phenomena of a material at extremely high strain...