Bruce M. Steinetz, Christopher DellaCorte
Combined cycle ramjet/scramjet engines being designed for advanced hypersonic vehicles, including the National Aerospace Plane (NASP), require innovative high temperature dynamic seals to seal the sliding interfaces of the articulating engine panels. New seals are required that will operate hot (1200-2000 °F), seal pressures ranging from 0-100 psi, remain flexible to accommodate significant sidewall distortions, and resist abrasion over the engine's operational life. This report reviews the recent high temperature durability screening assessments of a new braided rope seal concept, braided of emerging high temperature materials, that shows promise of meeting many of the seal demands of hypersonic engines. The paper presents durability data for: (a) the fundamental seal building-blocks--a range of candidate ceramic fiber tows; and for (b) braided rope seal subelements scrubbed under engine simulated sliding, temperature and preload conditions. Seal material/architecture attributes and limitations are identified through the investigations performed. The paper summarizes the current seal technology development status and presents areas in which future work will be performed.
@article{cc4e26fd-21ad-486c-ac48-565f0ea01b31,
title={High temperature dynamic engine seal tec},
author={Bruce M. Steinetz and Christopher DellaCorte},
year={2026},
language={en}
}TY - JOUR TI - High temperature dynamic engine seal tec AU - Bruce M. Steinetz AU - Christopher DellaCorte PY - 2026 LA - en ER -
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