The microstructural changes and mechanical response of an HT-9 sample shock loaded to a peak pressure of 11 GPa have been investigated by TEM, XRD, microhardness and EBSD techniques. Dislocation densities obtained by both direct measurements (via TEM) and indirect calculations (by XRD and hardness) indicate that shock loading results in similar to 2-3 fold increase in dislocation density. TEM analyses show that the shape, and density of the dislocations change after shock loading. In addition, shock loading causes local plastic deformation of the continuous parallel lath structure in some regions, together with an overall decrease in the aspect ratio of laths due to local plastic deformation and lath fragmentation. As a result of XRD analys...
Low-carbon steel AISI 1020 was subjected to high-pressure torsion (HPT) with 6.0 GPa pressure throug...
The effects of shock prestrain on the mechanical behavior and microstructure of annealed tantalum an...
It is shown that preloading of fine-grained copper with a the grain size of 0.5 m by a shock wave of...
A series of plate-impact experiments were conducted to investigate the influences of impact stress a...
The high-pressure torsion (HPT) process is a severe plastic deformation (SPD) technique which impose...
Tensile properties and microstructure changes under different stress states of tempered 9Cr-F/M stee...
The effect of shock-prestraining high-purity Fe, above and below the 13 GPa phase transition, on pos...
The passage of a shock wave through a material causes the properties of the post-impact, recovered m...
The effect of high-pressure torsion (HPT) on the textural components and microstructural evolution o...
The Department of Homeland Security (DHS) funded National Transportation Security Center of Excellen...
International audienceThis work provides an experimental analysis of the evolution of the microstruc...
The microstructural and mechanical response of materials to shock loading is of the utmost importanc...
Shock compression is a powerful tool with which to study the high pressure response of matter. Metal...
The plasticity mechanisms of press hardening steel with a fully lath martensite microstructure were ...
Behavior analysis of materials subjected to extreme demands remains a topical field for a wide range...
Low-carbon steel AISI 1020 was subjected to high-pressure torsion (HPT) with 6.0 GPa pressure throug...
The effects of shock prestrain on the mechanical behavior and microstructure of annealed tantalum an...
It is shown that preloading of fine-grained copper with a the grain size of 0.5 m by a shock wave of...
A series of plate-impact experiments were conducted to investigate the influences of impact stress a...
The high-pressure torsion (HPT) process is a severe plastic deformation (SPD) technique which impose...
Tensile properties and microstructure changes under different stress states of tempered 9Cr-F/M stee...
The effect of shock-prestraining high-purity Fe, above and below the 13 GPa phase transition, on pos...
The passage of a shock wave through a material causes the properties of the post-impact, recovered m...
The effect of high-pressure torsion (HPT) on the textural components and microstructural evolution o...
The Department of Homeland Security (DHS) funded National Transportation Security Center of Excellen...
International audienceThis work provides an experimental analysis of the evolution of the microstruc...
The microstructural and mechanical response of materials to shock loading is of the utmost importanc...
Shock compression is a powerful tool with which to study the high pressure response of matter. Metal...
The plasticity mechanisms of press hardening steel with a fully lath martensite microstructure were ...
Behavior analysis of materials subjected to extreme demands remains a topical field for a wide range...
Low-carbon steel AISI 1020 was subjected to high-pressure torsion (HPT) with 6.0 GPa pressure throug...
The effects of shock prestrain on the mechanical behavior and microstructure of annealed tantalum an...
It is shown that preloading of fine-grained copper with a the grain size of 0.5 m by a shock wave of...