Evidence of exposure of a metal component to a small charge explosion can be detected by observing microstructural modifications; they may be present even if the piece does not show noticeable overall plastic deformations. Particularly, if an austenitic stainless steel (or another metal having a face-centered cubic structure and a low stacking fault energy) is exposed to an explosive shock wave, high-speed deformation induces primarily mechanical twinning, whereas, in nonexplosive events, a lower velocity plastic deformation first induces slip. The occurrence of mechanical twins can be detected even if the surface is damaged or oxidized in successive events. In the present research, optical metallography (OM) and scanning electron microscop...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level ...
Effects on metal targets after an explosion include: fracture, plastic deformation, surface modific...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Evidence of exposure of a metal component to a small charge explosion can be detected by observing m...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Microstructural variations induced on AISI 304Cu steel disks by explosions which do not cause gross ...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, su...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, s...
Microstructural variations induced on AISI 304Cu steel disks by explosions of small charges which ca...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, s...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level ...
Effects on metal targets after an explosion include: fracture, plastic deformation, surface modific...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Evidence of exposure of a metal component to a small charge explosion can be detected by observing m...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Microstructural variations induced on AISI 304Cu steel disks by explosions which do not cause gross ...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, su...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, s...
Microstructural variations induced on AISI 304Cu steel disks by explosions of small charges which ca...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, s...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level ...
Effects on metal targets after an explosion include: fracture, plastic deformation, surface modific...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...