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タイトルPenetration experiments in aluminum 1100 targets using soda-lime glass projectiles
本文(外部サイト)http://hdl.handle.net/2060/19960008824
著者(英)Cardenas, Frank; Winkler, Jerry L.; Davidson, William E.; Cintala, Mark J.; See, Thomas H.; Haynes, Gerald; Horz, Friedrich; Bernhard, Ronald P.
著者所属(英)NASA Johnson Space Center
発行日1995-06-01
言語eng
内容記述The cratering and penetration behavior of annealed aluminum 1100 targets, with thickness varied from several centimeters to ultra-thin foils less than 1 micrometer thick, were experimentally investigated using 3.2 mm diameter spherical soda-lime glass projectiles at velocities from 1 to 7 km/s. The objective was to establish quantitative, dimensional relationships between initial impact conditions (impact velocity, projectile diameter, and target thickness) and the diameter of the resulting crater or penetration hole. Such dimensional relationships and calibration experiments are needed to extract the diameters and fluxes of hypervelocity particles from space-exposed surfaces and to predict the performance of certain collisional shields. The cratering behavior of aluminum 1100 is fairly well predicted. However, crater depth is modestly deeper for our silicate impactors than the canonical value based on aluminum projectiles and aluminum 6061-T6 targets. The ballistic-limit thickness was also different. These differences attest to the great sensitivity of detailed crater geometry and penetration behavior on the physical properties of both the target and impactor. Each penetration experiment was equipped with a witness plate to monitor the nature of the debris plume emanating from the rear of the target. This plume consists of both projectile fragments and target debris. Both penetration hole and witness-plate spray patterns systematically evolve in response to projectile diameter/target thickness. The relative dimensions of the projectile and target totally dominate the experimental products documented in this report; impact velocity is an important contributor as well to the evolution of penetration holes, but is of subordinate significance for the witness-plate spray patterns.
NASA分類SPACECRAFT DESIGN, TESTING AND PERFORMANCE
レポートNO96N15990
NASA-TM-104813
S-801
NAS 1.15:104813
権利No Copyright


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