NASA NTRS · 20050217167
High-Temperature Polymer Composites Tested for Hypersonic Rocket Combustor Backup Structure
Abstract
Significant component weight reductions are required to achieve the aggressive thrust-toweight goals for the Rocket Based Combined Cycle (RBCC) third-generation, reusable liquid propellant rocket engine, which is one possible engine for a future single-stage-toorbit vehicle. A collaboration between the NASA Glenn Research Center and Boeing Rocketdyne was formed under the Higher Operating Temperature Propulsion Components (HOTPC) program and, currently, the Ultra-Efficient Engine Technology (UEET) Project to develop carbon-fiber-reinforced high-temperature polymer matrix composites (HTPMCs). This program focused primarily on the combustor backup structure to replace all metallic support components with a much lighter polymer-matrixcomposite- (PMC-) titanium honeycomb sandwich structure.
Keep this discovery
Explore connections, maps & timelines
Sutter, James K., Shin, E. Eugene, Thesken, John C., Fink, Jeffrey E.. 2005-06-01. High-Temperature Polymer Composites Tested for Hypersonic Rocket Combustor Backup Structure. https://ntrs.nasa.gov/citations/20050217167
Cite the original work for its findings. Save a collection to share your selection of sources.