SIENNA TECHNOLOGIES, INC. — Department of Defense SBIR Phase II: Carbon-fiber reinforced silicon carbide matrix (SiC/Cf) composite was identified as the le

SIENNA TECHNOLOGIES, INC. — SBIR Phase II award from Department of Defense.

Amount
$995,306
Agency
Department of Defense · Missile Defense Agency
Program / Phase
SBIR · Phase II
Solicitation
2011.2
NAICS
Place of performance
WA
Period
2013-08-09 → 2015-08-11

Description

Carbon-fiber reinforced silicon carbide matrix (SiC/Cf) composite was identified as the leading thruster construction material for SDACS for SM3-Block IIB. For SDACS propulsion applications, SiC/Cf composite surfaces must be hermetically sealed and SiC/Cf composite must be joined to each other and to refractory metal alloys for thruster construction. In Phase I we developed novel joining alloys and demonstrated joining techniques for SiC/Cf composites to each other and to C103, a refractory Nb alloy. The shear strengths of the SiC/Cf composite-C103 alloy joints (156 MPa) were almost 5 times higher than the highest value (34 MPa) reported in open literature. The Phase II project will expand on the success of Phase I work by (i) fine tuning braze alloy compositions, (ii) demonstrating the applicability of developed joining techniques to achieve high reliability SiC/Cf composite-(Mo-Re) alloy joints, (iii) designing joint geometries that are applicable for thruster construction by computer modeling, and (iv) providing a prototype SiC/Cf composite-C103 or Mo-Re alloy joint that is suitable for incorporating into an SDACS thruster for testing in collaboration with Aerojet-Sacramento.