AbstractWe present ballistic and fragmentation data for brittle, granular aluminum spheres following high- velocity impact (0.5-2.0km/s) on thin steel plates. These spheres, formed from isostatically pressed alu- minum powder, are representative of a wide variety of metallic reactive materials currently being studied. Simple analytic theories are introduced which provide a reasonable description of the residual velocity and hole diameter following impact. With increasing velocity there is an intriguing transition to a power-law fragment distribution, which we have interpreted as arising from extensive microbranching of fast-running cracks. The key equations of an analytic theory describing the fragment distributions are also presented
The informed design with respect to hypervelocity collisions involving micrometeoroid and orbital de...
Results of 2 mm aluminium spheres perforating Al, Cu, Mo, Ag, Au, Sn, and Zn metal foils of a purity...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
The article of record as published may be found at http://dx.doi.org/10.1016/j.proeng.2013.05.076We ...
The article of record as published may be found at http://dx.doi.org/10.1063/1.4746788We report the ...
Results of a series of hypervelocity impact tests are presented. In these tests, 1.275-g, 9.53-mm-di...
AbstractIn support of the U.S. Army's science and advanced technology objective in hypervelocity pen...
Near-field blast effects for centrally initiated spherical heterogeneous explosive charges have bee...
The brittle fragmentation of spheres is studied numerically by a 3D Discrete Element Model. Large sc...
AbstractDuring hypervelocity impact (>a few kms−1) the resulting cratering and/or disruption of the ...
17 USC 105 interim-entered record; under review.The article of record as published may be found at h...
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 ...
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 ...
The informed design with respect to hypervelocity collisions involving micrometeoroid and orbital de...
Results of 2 mm aluminium spheres perforating Al, Cu, Mo, Ag, Au, Sn, and Zn metal foils of a purity...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...
The article of record as published may be found at http://dx.doi.org/10.1016/j.proeng.2013.05.076We ...
The article of record as published may be found at http://dx.doi.org/10.1063/1.4746788We report the ...
Results of a series of hypervelocity impact tests are presented. In these tests, 1.275-g, 9.53-mm-di...
AbstractIn support of the U.S. Army's science and advanced technology objective in hypervelocity pen...
Near-field blast effects for centrally initiated spherical heterogeneous explosive charges have bee...
The brittle fragmentation of spheres is studied numerically by a 3D Discrete Element Model. Large sc...
AbstractDuring hypervelocity impact (>a few kms−1) the resulting cratering and/or disruption of the ...
17 USC 105 interim-entered record; under review.The article of record as published may be found at h...
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 ...
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 ...
The informed design with respect to hypervelocity collisions involving micrometeoroid and orbital de...
Results of 2 mm aluminium spheres perforating Al, Cu, Mo, Ag, Au, Sn, and Zn metal foils of a purity...
Projectile/target impact crater systems involving soda-lime glass/1100 aluminum, ferritic stainless ...