Durability of Intercalated Graphite Epoxy Composites in Low Earth Orbit

Durability of Intercalated Graphite Epoxy Composites in Low Earth Orbit

Paperback (31 Dec 2018)

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Publisher's Synopsis

The electrical conductivity of graphite epoxy composites can be substantially increased by intercalating (inserting guest atoms or molecules between the graphene planes) the graphite fibers before composite formation. The resulting high strength, low density, electrically conducting composites have been proposed for EMI shielding in spacecraft. Questions have been raised, however, about their durability in the space environment, especially with respect to outgassing of the intercalates, which are corrosive species such as bromine. To answer those concerns, six samples of bromine intercalated graphite epoxy composites were included in the third Evaluation of Oxygen Interaction with Materials (EOIM-3) experiment flown on the Space Shuttle Discovery (STS-46). Changes in electrical conductivity, optical reflectance, surface texture, and mass loss for SiO2 protected and unprotected samples were measured after being exposed to the LEO environment for 42 hours. SiO2 protected samples showed no degradation, verifying conventional protection strategies are applicable to bromine intercalated composites. The unprotected samples showed that bromine intercalation does not alter the degradation of graphite-epoxy composites. No bromine was detected to have been released by the fibers allaying fears that outgassing could be disruptive to the sensitive electronics the EMI shield is meant to protect. Gaier, James R. and Davidson, Michelle L. and Shively, Rhonda Glenn Research Center NASA-TM-107157, E-10100, NAS 1.15:107157 RTOP 233-1A-1E...

Book information

ISBN: 9781792683374
Publisher: Amazon Digital Services LLC - KDP Print US
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 38
Weight: 113g
Height: 279mm
Width: 216mm
Spine width: 2mm