Metals exposed to explosions undergo several macro and micro changes. At the microstructural level slip bands or mechanical twins, caused by the pressure and temperature wave, can be detected. Twinning or slip occurs depending on the metal stacking fault energy, the blast wave pressure and the deformation rate. An experimental campaign was performed on different FCC metals. Results concerning a-brass (30% Zn) are presented herein. Specimens exposed to small charge explosion (100 g of plastic explosive) were analyzed by optical and electronic microscopy, by Electron Back-Scattered Diffraction (EBSD) imaging, and by X-ray diffraction. Microstructural plastic deformation marks were detected and their possible attribution, either to mechanical ...
This study deals with the microstructural response of several metals and alloys to severe plastic de...
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...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level ...
Evidence of exposure of a metal component to a small charge explosion can be detected by observing m...
Evidence of exposure of a metal component to a small charge explosion can be detected by observing m...
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...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, s...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Effects on metal targets after an explosion include: fracture, plastic deformation, surface modific...
This study deals with the microstructural response of several metals and alloys to severe plastic de...
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...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level ...
Evidence of exposure of a metal component to a small charge explosion can be detected by observing m...
Evidence of exposure of a metal component to a small charge explosion can be detected by observing m...
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...
Effects on metal targets after an explosion include the following: fracture, plastic deformation, s...
Optical, scanning electron, and scanning tunneling microscopy, as well as X-ray diffraction, were em...
Effects on metal targets after an explosion include: fracture, plastic deformation, surface modific...
This study deals with the microstructural response of several metals and alloys to severe plastic de...
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...