Spacecraft polymeric materials as well as polymer-matrix carbon-fiber composites can be significantly eroded as a result of exposure to atomic oxygen in low Earth orbit (LEO). Several new materials now exist, as well as modifications to conventionally used materials, that provide much more resistance to atomic oxygen attack than conventional hydrocarbon polymers. Protective coatings have also been developed which are resistant to atomic oxygen attack and provide protection of underlying materials. However, in actual spacecraft applications, the configuration, choice of materials, surface characteristics and functional requirements of quasi-durable materials or protective coatings can have great impact on the resulting performance and durabi...
Because of its high reactivity, atomic oxygen causes surface erosion on polymeric materials. althoug...
Spacecraft in low Earth orbit (LEO) are subjected to harsh environmental conditions, including radia...
Because atomic oxygen and solar ultraviolet radiation present in the low earth orbital (LEO) environ...
Low Earth orbital atomic oxygen is capable of eroding most polymeric materials typically used on spa...
Atomic oxygen, formed in Earth s thermosphere, interacts readily with many materials on spacecraft f...
Atomic oxygen is formed in the low Earth orbital environment (LEO) by photo dissociation of diatomic...
In this paper structural material selection and surface processing considerations problem for low ea...
Polymer-matrix composites are ideally suited for space vehicles because of high strength to weight r...
Effects on Atomic Oxygen (AO) on space systems in low earth orbit (LEO) are today not yet completely...
At the altitudes of low-earth orbit (LEO), atomic oxygen (AO) is the most abundant chemical species....
The effects of atomic oxygen (AO) on materials in aerospace environments are examined. Materials are...
Low Earth orbital (LEO) atomic oxygen cannot only erode the external surfaces of polymers on spacecr...
The long-term performance of structural materials in the space environment is a key research activit...
Low Earth orbital (LEO) atomic oxygen cannot only erode the external surfaces of polymers on spacecr...
Atomic oxygen (AO) erodes most organic materials. and ultraviolet radiation embrittles polymers. A p...
Because of its high reactivity, atomic oxygen causes surface erosion on polymeric materials. althoug...
Spacecraft in low Earth orbit (LEO) are subjected to harsh environmental conditions, including radia...
Because atomic oxygen and solar ultraviolet radiation present in the low earth orbital (LEO) environ...
Low Earth orbital atomic oxygen is capable of eroding most polymeric materials typically used on spa...
Atomic oxygen, formed in Earth s thermosphere, interacts readily with many materials on spacecraft f...
Atomic oxygen is formed in the low Earth orbital environment (LEO) by photo dissociation of diatomic...
In this paper structural material selection and surface processing considerations problem for low ea...
Polymer-matrix composites are ideally suited for space vehicles because of high strength to weight r...
Effects on Atomic Oxygen (AO) on space systems in low earth orbit (LEO) are today not yet completely...
At the altitudes of low-earth orbit (LEO), atomic oxygen (AO) is the most abundant chemical species....
The effects of atomic oxygen (AO) on materials in aerospace environments are examined. Materials are...
Low Earth orbital (LEO) atomic oxygen cannot only erode the external surfaces of polymers on spacecr...
The long-term performance of structural materials in the space environment is a key research activit...
Low Earth orbital (LEO) atomic oxygen cannot only erode the external surfaces of polymers on spacecr...
Atomic oxygen (AO) erodes most organic materials. and ultraviolet radiation embrittles polymers. A p...
Because of its high reactivity, atomic oxygen causes surface erosion on polymeric materials. althoug...
Spacecraft in low Earth orbit (LEO) are subjected to harsh environmental conditions, including radia...
Because atomic oxygen and solar ultraviolet radiation present in the low earth orbital (LEO) environ...