ULTRAMET — Department of Defense SBIR Phase II: MDA14-002

ULTRAMET — SBIR Phase II award from Department of Defense.

Amount
$1,488,411
Agency
Department of Defense · Missile Defense Agency
Program / Phase
SBIR · Phase II
Topic
MDA14-002
Solicitation
14.2
NAICS
Place of performance
CA
Period
2016-10-20 → 2020-08-14

Description

Advanced lightweight ablative materials are needed to provide additional performance gains for next-generation ballistic missile defense system (BMDS) interceptors. The interceptor third stage, in particular, will benefit substantially from a reduction in inert weight, which enables increased missile stack velocity. Operational targets for the interceptor third-stage rocket motor (TSRM), and for other next-generation multi-pulse motors for MDA, Air Force, and Navy missile applications, require decreased inert mass to increase velocity at burnout. In the Phase I project, Ultramet established the feasibility of utilizing aerogel-filled open-cell foam for divert and attitude control system (DACS) valve manifold insulators. Analysis showed that the insulator would reduce the valve body temperature and system weight significantly when used as a secondary insulator behind a primary insulating material. Based on those results, a more immediate and direct application for the material system was identified for Phase II development, specifically within a 21-inch tactical boost motor under development by Orbital ATK for the Standard Missile-3 (SM-3) Future Naval Capability (FNC) TSRM. In the Phase II project, aerogel-filled foam will be utilized behind carbon/phenolic ablator-filled foam as a hybrid ablator/aerogel TSRM exit cone insulator. In conjunction with design and analysis at Orbital ATK and properties characterization at Southern Research, this material system will be optimized to minimize thermal conductivity and system mass in order to maximize motor performance and burnout velocity.