Dimple, spall, and perforation characteristics of thin plates of nine materials under hypervelocity impact
Dimple, spall, and perforation characteristics of thin metal plates under hypervelocity impact
Engineering topics
Publications and source records attributed to Mc Millan, A. R..
Dimple, spall, and perforation characteristics of thin metal plates under hypervelocity impact
Crater characteristics of 11 metal alloys under hypervelocity impact including effects of projectile density and target temperature
Hypervelocity impact into stainless steel tubes armored with reinforced beryllium
Dimple, spall, and perforation of aluminum, niobium, and steel plates under hypervelocity impact
Thin double aluminum sheet spacecraft shielding for protection from meteoroid impact damage
Hypervelocity impact damage characteristics in beryllium and graphite plates and tubes
Optimum structural meteoroid protection requirements for Apollo and Mars mission spacecraft
Blunt hypervelocity projectile lift-drag ratio and impact velocity effects on target penetration and impact damage
Hazards of interaction of meteoroids with thin metallic shields of spacecraft structures and computations of impact damage for definition of penetration
Simulation of meteoroid interaction and impact damage to spacecraft structures
Space simulation experimental studies of penetration mechanics of meteoroids into typical spacecraft structures