A test program was conducted at the National Aeronautics and Space Administration's Lewis Research Center (LeRC) to evaluate the long term low Earth orbital (LEO) atomic oxygen (AO) durability of a flexible (fiberglass-epoxy composite) batten. The flexible batten is a component used to provide structural rigidity in the photovoltaic array mast on Space Station. The mast is used to support and articulate the photovoltaic array, therefore, the flexible batten must be preloaded for the 15 year lifetime of an array blanket. Development hardware and composite materials were evaluated in ground testing facilities for AO durability and dynamic retraction-deployment cyclic loading representative of expected full life in-space application. The CV114...
The International Space Station (ISS) solar arrays utilize MD-944 diode tape to protect the underlyi...
Atomic-oxygen erosion on spacecraft in low Earth orbit is an issue which is becoming increasingly im...
Candidate Space Station Freedom radiator coatings including Z-93, YB-71, anodized aluminum and SiO(x...
An International Space Station solar array validation coupon was exposed in a directed atomic oxygen...
The need for efficient, cost effective sources of electrical power in space has led to the developme...
The photovoltaic (PV) power system for Space Station Freedom (SSF) uses solar array blankets which p...
Power degradation in the solar cells was consistent with the exposure environment and appears to be ...
Space solar power systems for use in the low Earth orbit (LEO) environment experience a variety of h...
The long-term performance of structural materials in the space environment is a key research activit...
Fiberglass-epoxy composites are considered for use as structural members for the mast of the space s...
Low Earth orbital atomic oxygen is capable of eroding most polymeric materials typically used on spa...
Polysiloxane-polyimide films are of interest as a replacement for polyimide Kapton in the Space Stat...
Spacecraft in low Earth orbit (LEO) are subjected to harsh environmental conditions, including radia...
Research was conducted at MSFC on the behavior of elastomeric materials after exposure to simulated ...
Successful use of composites in low earth orbit (LEO) depends on their ability to survive long-term ...
The International Space Station (ISS) solar arrays utilize MD-944 diode tape to protect the underlyi...
Atomic-oxygen erosion on spacecraft in low Earth orbit is an issue which is becoming increasingly im...
Candidate Space Station Freedom radiator coatings including Z-93, YB-71, anodized aluminum and SiO(x...
An International Space Station solar array validation coupon was exposed in a directed atomic oxygen...
The need for efficient, cost effective sources of electrical power in space has led to the developme...
The photovoltaic (PV) power system for Space Station Freedom (SSF) uses solar array blankets which p...
Power degradation in the solar cells was consistent with the exposure environment and appears to be ...
Space solar power systems for use in the low Earth orbit (LEO) environment experience a variety of h...
The long-term performance of structural materials in the space environment is a key research activit...
Fiberglass-epoxy composites are considered for use as structural members for the mast of the space s...
Low Earth orbital atomic oxygen is capable of eroding most polymeric materials typically used on spa...
Polysiloxane-polyimide films are of interest as a replacement for polyimide Kapton in the Space Stat...
Spacecraft in low Earth orbit (LEO) are subjected to harsh environmental conditions, including radia...
Research was conducted at MSFC on the behavior of elastomeric materials after exposure to simulated ...
Successful use of composites in low earth orbit (LEO) depends on their ability to survive long-term ...
The International Space Station (ISS) solar arrays utilize MD-944 diode tape to protect the underlyi...
Atomic-oxygen erosion on spacecraft in low Earth orbit is an issue which is becoming increasingly im...
Candidate Space Station Freedom radiator coatings including Z-93, YB-71, anodized aluminum and SiO(x...