AbstractIn support of the U.S. Army's science and advanced technology objective in hypervelocity penetration mechanics, the Army Research Laboratory has been studying the terminal ballistics of conventional and non-conventional high-velocity kinetic energy projectiles against urban, light-armor and heavy-armor targets. The purpose is to identify and analyze both mechanisms and concepts to effectively defeat a range of targets with inert payloads using the elevated impact velocities available from future delivery systems. To this end, a series of experiments has been performed launching low-aspect-ratio aluminum and steel cylindrical projectiles, aluminum conical projectiles, and encased reactive material projectiles, with nominal masses bet...
In order to determine the effects of target thickness on the penetration and cratering of a target r...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
AbstractIn support of the U.S. Army's science and advanced technology objective in hypervelocity pen...
Results of a series of hypervelocity impact tests are presented. In these tests, 1.275-g, 9.53-mm-di...
AbstractWe present ballistic and fragmentation data for brittle, granular aluminum spheres following...
AbstractThe experimental results and numerical modeling of penetration process of fluoropolymer proj...
In this work the influence of the characteristics ofthematerial ofthe striker (cumulative jet or pr...
The present work investigates the impact behaviour of Al 2024-T3 alloy using FEM analysis performed ...
The cratering and penetration behavior of annealed aluminum 1100 targets, with thickness varied from...
Supplementary files for article Mechanics of ballistic impact with non-axisymmetric projectiles on t...
Supplementary files for article Mechanics of ballistic impact with non-axisymmetric projectiles on t...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
Ballistic resistance has become towards researchers’ attention especially those in enforcement indus...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
In order to determine the effects of target thickness on the penetration and cratering of a target r...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
AbstractIn support of the U.S. Army's science and advanced technology objective in hypervelocity pen...
Results of a series of hypervelocity impact tests are presented. In these tests, 1.275-g, 9.53-mm-di...
AbstractWe present ballistic and fragmentation data for brittle, granular aluminum spheres following...
AbstractThe experimental results and numerical modeling of penetration process of fluoropolymer proj...
In this work the influence of the characteristics ofthematerial ofthe striker (cumulative jet or pr...
The present work investigates the impact behaviour of Al 2024-T3 alloy using FEM analysis performed ...
The cratering and penetration behavior of annealed aluminum 1100 targets, with thickness varied from...
Supplementary files for article Mechanics of ballistic impact with non-axisymmetric projectiles on t...
Supplementary files for article Mechanics of ballistic impact with non-axisymmetric projectiles on t...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
Ballistic resistance has become towards researchers’ attention especially those in enforcement indus...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
In order to determine the effects of target thickness on the penetration and cratering of a target r...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...