Silver mirror samples with protective coatings were subjected to a stream of 27 microns alumina particles to induce pinhole defects. The protective coating consisted of a layer of aluminum dioxide over silver followed by a layer of silicon dioxide over the alumina. Samples were prepared on both graphite-epoxy composite and fused quartz substrates. After exposure to the hard particle stream, the samples were exposed to an oxygen plasma environment in a laboratory plasma asher. The effects of both the hard particles and the oxygen plasma were documented by both reflectance measurements and scanning electron microscopy. The results indicated that oxidative damage to the silver reflecting layer continues beyond that of the erosively exposed sil...
Low Earth orbital atomic oxygen is capable of eroding most polymeric materials typically used on spa...
The effects of atomic oxygen (AO) on materials in aerospace environments are examined. Materials are...
Earlier Shuttle flight experiments have shown atomic oxygen within the orbital environment can inter...
Solar dynamic power system mirrors for use on space station and other spacecraft flown in low Earth ...
Second surface silver microsheet glass concentrators are being developed for potential use in future...
Thin aluminum films were considered for use as a reflective surface for solar collectors on orbiting...
Reflective surfaces for space station power generation systems are required to withstand the atomic ...
Fiberglass-epoxy composites are considered for use as structural members for the mast of the space s...
Candidate Space Station Freedom radiator coatings including Z-93, YB-71, anodized aluminum and SiO(x...
Pinholes or other defect sites in a protective oxide coating provide pathways for atomic oxygen in l...
Power degradation in the solar cells was consistent with the exposure environment and appears to be ...
A materials interaction experiment has been approved to study atomic oxygen interaction mechanisms a...
Understanding of the basic processes of atomic oxygen interaction is currently at a very elementary ...
A system for the vacuum deposition of atomic-oxygen durable coatings for reflective solar dynamic po...
Specimens of eight different optical mirror materials were flown in low earth orbit as part of the L...
Low Earth orbital atomic oxygen is capable of eroding most polymeric materials typically used on spa...
The effects of atomic oxygen (AO) on materials in aerospace environments are examined. Materials are...
Earlier Shuttle flight experiments have shown atomic oxygen within the orbital environment can inter...
Solar dynamic power system mirrors for use on space station and other spacecraft flown in low Earth ...
Second surface silver microsheet glass concentrators are being developed for potential use in future...
Thin aluminum films were considered for use as a reflective surface for solar collectors on orbiting...
Reflective surfaces for space station power generation systems are required to withstand the atomic ...
Fiberglass-epoxy composites are considered for use as structural members for the mast of the space s...
Candidate Space Station Freedom radiator coatings including Z-93, YB-71, anodized aluminum and SiO(x...
Pinholes or other defect sites in a protective oxide coating provide pathways for atomic oxygen in l...
Power degradation in the solar cells was consistent with the exposure environment and appears to be ...
A materials interaction experiment has been approved to study atomic oxygen interaction mechanisms a...
Understanding of the basic processes of atomic oxygen interaction is currently at a very elementary ...
A system for the vacuum deposition of atomic-oxygen durable coatings for reflective solar dynamic po...
Specimens of eight different optical mirror materials were flown in low earth orbit as part of the L...
Low Earth orbital atomic oxygen is capable of eroding most polymeric materials typically used on spa...
The effects of atomic oxygen (AO) on materials in aerospace environments are examined. Materials are...
Earlier Shuttle flight experiments have shown atomic oxygen within the orbital environment can inter...