Published January 1991 | Version v1
Report

Atomic oxygen interaction with solar array blankets at protective coating defect sites

  • 1. Case Western Reserve Univ., Cleveland, OH (USA)

Description

Atomic oxygen in the low-Earth-orbital environment oxidizes SiOx protected polyimide Kapton solar array blankets at sites which are not protected such as pin windows or scratches in the protective coatings. The magnitude and shape of the atomic oxygen undercutting which occurs at these sites is dependent upon the exposure environment details such as arrival direction and reaction probability. The geometry of atomic oxygen undercutting at defect sites exposed to atomic oxygen in plasma asher was used to develop a Monte Carlo model to simulate atomic oxygen erosion processes at defect sites in protected Kapton. Comparisons of Monte Carlo predictions and experimental results are presented for plasma asher atomic oxygen exposures for large and small defects as well as for protective coatings on one or both sides of Kapton. The model is used to predict in-space exposure results at defect sites for both directed and sweeping atomic oxygen exposure. A comparison of surface textures predicted by the Monte Carlo model and those experimentally observed from both directed space ram and laboratory plasma asher atomic oxygen exposure indicate substantial agreement

Additional details

Publishing Information

Imprint Title
Fourth Annual Workshop on Space Operations Applications and Research (SOAR 90)
Imprint Pagination
6 p.
Journal Page Range
p. 726-732.
Report number
N--91-20702

Conference

Title
4. annual workshop on space operations applications and research (SOAR 90).
Dates
26-28 Jun 1990.
Place
Albuquerque, NM (USA).