Effects on metal targets after an explosion include: fracture, plastic deformation, surface modifications, microstructural crystallographic alterations with ensuing mechanical properties changes. In the case of small charge explosions, macroscopic effects are restricted to small chargeto- target distances, whereas crystal alterations can still be observed at moderate distances. Microstructural variations, induced on gold alloy disk samples, as compared to previous results on AISI 304Cu steel samples, are illustrated. The samples were subjected to blast wave overpressures in the 0.5 to 195 MPa range. Minimum distances and peak pressures, which could still yield observable alterations, were especially investigated. Blast-related micro...
Microstructural variations induced on AISI 304Cu steel disks by explosions of small charges which ca...
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...
Effects on metal targets after an explosion include: fracture, plastic deformation, surface modific...
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, su...
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 ...
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...
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 ...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Microstructural variations induced on AISI 304Cu steel disks by explosions of small charges which ca...
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...
Effects on metal targets after an explosion include: fracture, plastic deformation, surface modific...
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, su...
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 ...
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...
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 ...
Metals exposed to explosions undergo several macro and micro changes. At the microstructural level s...
Microstructural variations induced on AISI 304Cu steel disks by explosions of small charges which ca...
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...