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Hypervelocity impact microfoil perforations in the LEO space environment (LDEF, MAP AO-023 experiment)The Microabrasion Foil Experiment comprises arrays of frames, each supporting two layers of closely spaced metallic foils and a back-stop plate. The arrays, deploying aluminum and brass foil ranging from 1.5 to some 30 microns were exposed for 5.78 years on NASA's LDEF at a mean altitude of 458 km. They were deployed on the North, South, East, West, and Space pointing faces; results presented comprise the perforation rates for each location as a function of foil thickness. Initial results refer primarily to aluminum of 5 microns thickness or greater. This penetration distribution, comprising 2,342 perforations in total, shows significantly differing characteristics for each detector face. The anisotropy confirms, incorporating the dynamics of particulate orbital mechanics, the dominance of incorporating extraterrestrial particulates penetrating thicknesses greater than 20 microns in Al foil, yielding fluxes compatible with hyperbolic geocentric velocities. For thinner foils, a disproportionate increase in flux of particles on the East, North, and South faces shows the presence of orbital particulates which exceed the extraterrestrial component perforation rate at 5 micron foil thickness by a factor of approx. 4.
Document ID
19920014069
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Mcdonnell, J. A. M.
(Kent Univ. Canterbury, United Kingdom)
Stevenson, T. J.
(Kent Univ. Canterbury, United Kingdom)
Date Acquired
September 6, 2013
Publication Date
January 1, 1992
Publication Information
Publication: NASA. Langley Research Center, LDEF: 69 Months in Space. First Post-Retrieval Symposium, Part 1
Subject Category
Spacecraft Design, Testing And Performance
Accession Number
92N23312
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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