NASA NTRS · 20000033857
Sandwich Composite, Syntactic Foam Core Based, Application for Space Structures
Abstract
The current Solid Rocket Booster (SRB) launch vehicle has several metal based components that require a Thermal Protective System (TPS) be applied to the exterior surface to ensure its structural integrity and to protect the interior hardware from aerodynamic heating. TPS materials have distinct disadvantages associated with their use. One disadvantage to the application of TPS is that it can act as a debris source to the Space Shuttle Orbiter during flight and it also adds weight to the system without directly contributing any structural strength. One of the specific areas examined under this program was to replace a metal/TPS system with polymer based composites. A polymer matrix based sandwich composite was developed which had both structural and insulative properties to meet the high aerodynamic structural and heating load survival requirements. The SRB Nose Cap was selected as a candidate for this application. The sandwich system being qualified for this application is a carbon/epoxy outer and inner skin with a high strength-low thermal conductivity syntactic foam core.
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Hodge, Andrew J., Kaul, Raj K., McMahon, William M., Reinarts, Thomas. 2000-01-01. Sandwich Composite, Syntactic Foam Core Based, Application for Space Structures. https://ntrs.nasa.gov/citations/20000033857
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