NASA NTRS · 19920018038
Monte Carlo modeling of atomic oxygen attack of polymers with protective coatings on LDEF
Abstract
Characterization of the behavior of atomic oxygen interaction with materials on the Long Duration Exposure Facility (LDEF) will assist in understanding the mechanisms involved, and will lead to improved reliability in predicting in-space durability of materials based on ground laboratory testing. A computational simulation of atomic oxygen interaction with protected polymers was developed using Monte Carlo techniques. Through the use of assumed mechanistic behavior of atomic oxygen and results of both ground laboratory and LDEF data, a predictive Monte Carlo model was developed which simulates the oxidation processes that occur on polymers with applied protective coatings that have defects. The use of high atomic oxygen fluence-directed ram LDEF results has enabled mechanistic implications to be made by adjusting Monte Carlo modeling assumptions to match observed results based on scanning electron microscopy. Modeling assumptions, implications, and predictions are presented, along with comparison of observed ground laboratory and LDEF results.
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Bruce A. Banks, Kim K. Degroh, Edward A. Sechkar. 1992-06-01. Monte Carlo modeling of atomic oxygen attack of polymers with protective coatings on LDEF. https://ntrs.nasa.gov/citations/19920018038
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