Experimental results are presented on the erosion characteristics of the polyimide Kapton H, which serves as a blanket material in solar arrays. This polymer has a number of characteristics that make it a suitable choice for both terrestrial and space applications. In this paper attention is focused on the durability of protected Kapton when exposed to atomic oxygen (AO) in a plasma asher. A strip of 0.025-mm thick Kapton film, coated on both sides with SiO2, was studied during a 1306 hour exposure. The erosion, located at defect sites in the protective coating and measured optically, is described in terms of volume loss as a function of AO fluence. Three simple geometric profiles are used to generate a useful array of cavity shapes to mode...
Computational modeling of the erosion of polymers caused by atomic oxygen in low Earth orbit (LEO) i...
The photovoltaic (PV) power system for Space Station Freedom (SSF) uses solar array blankets which p...
The atomic oxygen erosion yields of various materials, measured in volume of material oxidized per i...
Understanding the behavior of polymeric materials when exposed to the low-Earth-orbit (LEO) environm...
Atomic oxygen in the low-Earth-orbital environment oxidizes SiOx protected polyimide Kapton solar ar...
Polysiloxane-polyimide films are of interest as a replacement for polyimide Kapton in the Space Stat...
The probability of atomic oxygen reacting with polymeric materials is orders of magnitude lower at t...
grantor: University of TorontoWithin this study, four developments are presented. First, t...
Although the Long Duration Exposure Facility (LDEF) has exposed materials with a fixed orientation r...
Kapton film is a polymeric material widely used on low-Earth-orbit (LEO) spacecraft surfaces. In the...
Polymer degradation occurs as a result of exposure to atomic oxygen in low Earth orbit (LEO). The da...
Protection for polymeric surfaces is needed to make them durable in the low Earth orbital environmen...
Diverse polymeric materials, including several variations of Kapton, were flown on STS-46 as part of...
A Monte Carlo computational model has been developed which simulates atomic oxygen attack of protect...
Polymers such as polyimide Kapton (DuPont) and Teflon FEP (DuPont, fluorinated ethylene propylene) a...
Computational modeling of the erosion of polymers caused by atomic oxygen in low Earth orbit (LEO) i...
The photovoltaic (PV) power system for Space Station Freedom (SSF) uses solar array blankets which p...
The atomic oxygen erosion yields of various materials, measured in volume of material oxidized per i...
Understanding the behavior of polymeric materials when exposed to the low-Earth-orbit (LEO) environm...
Atomic oxygen in the low-Earth-orbital environment oxidizes SiOx protected polyimide Kapton solar ar...
Polysiloxane-polyimide films are of interest as a replacement for polyimide Kapton in the Space Stat...
The probability of atomic oxygen reacting with polymeric materials is orders of magnitude lower at t...
grantor: University of TorontoWithin this study, four developments are presented. First, t...
Although the Long Duration Exposure Facility (LDEF) has exposed materials with a fixed orientation r...
Kapton film is a polymeric material widely used on low-Earth-orbit (LEO) spacecraft surfaces. In the...
Polymer degradation occurs as a result of exposure to atomic oxygen in low Earth orbit (LEO). The da...
Protection for polymeric surfaces is needed to make them durable in the low Earth orbital environmen...
Diverse polymeric materials, including several variations of Kapton, were flown on STS-46 as part of...
A Monte Carlo computational model has been developed which simulates atomic oxygen attack of protect...
Polymers such as polyimide Kapton (DuPont) and Teflon FEP (DuPont, fluorinated ethylene propylene) a...
Computational modeling of the erosion of polymers caused by atomic oxygen in low Earth orbit (LEO) i...
The photovoltaic (PV) power system for Space Station Freedom (SSF) uses solar array blankets which p...
The atomic oxygen erosion yields of various materials, measured in volume of material oxidized per i...