SUPERCOOL METALS INC.
BRANFORD, CT · UEI UL6KF9XK97F2 · CAGE 74XP1
Awarded (5-yr transactions)
$3.8M
Set-aside awards seen
1
Latest period end
Mar 2028
Largest contract awards
- SP470122C0057$2.9M
SUPERCOOL METALS SBIR II PROPOSAL L2-0364 ENTITLED " EFFICIENT FABRICATION OF COMPONENTS FOR AIR AND SPACE SYSTEMS THROUGH THERMOPLASTIC FORMING OF BULK METALLIC GLASSES"
Defense Logistics Agency · NAICS 561790 · Jun 2022 – Mar 2028 · official record ↗
- 80NSSC26C0014$2.0M
FY25 CCRPP - SUPERCOOL METALS INC. - ADVANCING COMMERCIALIZATION AND MANUFACTURING OF PRECISION ROBOTICS COMPONENTS THROUGH THERMOPLASTIC FORMING OF BULK METALLIC GLASSES
National Aeronautics and Space Administration · NAICS 541713 · Apr 2026 – Mar 2028 · official record ↗
- 80NSSC18C0132$899K
DEMAND FOR NOVEL MANUFACTURING METHODS FOR SPACE SYSTEMS BRINGS UNIQUE PROPERTIES OF BULK METALLIC GLASSES (BMG) INTO THE SPOTLIGHT. IN ADDITION TO SUPERIOR MECHANICAL PROPERTIES ASSOCIATED WITH ENHANCED RELIABILITY, BMG TECHNOLOGY CAN OFFER NEW MANUFACTURING PROCESSES THAT RESULT IN COMPONENTS WITH HIGHER PRECISION AND COMPLEXITY, ELIMINATING MACHINING AND MINIMIZING FINAL ASSEMBLY. IN THIS PROJECT, WE PROPOSE TO UTILIZE THE UNIQUE THERMOPLASTIC FORMING (TPF) ABILITY OF BMGS TO NET SHAPE HIGH PRECISION ROBOTIC GEARS. WITHIN PHASE I, WE HAVE PROVEN FEASIBILITY OF THIS TECHNOLOGY. THE TECHNICAL OBJECTIVES FOR PHASE II IS TO FURTHER ADVANCE THE TECHNOLOGY TO A LEVEL THAT ALLOWS NASA TO TEST AND USE BMG GEARS IN NASA MISSIONS. THIS REQUIRES HIGH PRECISION, REPEATABILITY, ROBUSTNESS, AND CONSISTENCY OF FABRICATED PARTS. IN ADDITION, A TECHNICAL FOCUS WILL BE ON EXPANDING THE VERSATILITY OF TPF-BASED FABRICATION PROCESS IN TERMS OF THE RANGE OF GEOMETRIES AND SIZES OF FLEXSPLINES AND THE RANGE OF BMG ALLOYS THAT CAN BE USED WITH TPF PROCESSES. IDENTIFYING THE SUITE OF BMG ALLOYS THAT CAN BE USED FOR TPF-BASED MOLDING WOULD PROVIDE NASA WITH AN OPTION TO SELECT THE BEST PROPERTY COMBINATIONS IN TERMS OF SPECIFIC STRENGTH, DUCTILITY, WEAR, FRICTION, AND COSTS. AN ADDITIONAL TECHNICAL OBJECTIVE IS TO DEVELOP STRATEGIES TO REDUCE FRICTION AND WEAR THROUGH SURFACE FINISH OF THE MOLDED FLEXSPLINES AND FABRICATION OF SURFACE COMPOSITES IN A ONE PROCESSING STEP. THE OUTCOME OF THE PROJECT WILL BE MANUFACTURING CAPABILITIES FOR PRECISION ROBOTIC COMPONENTS AND READY-TO-TEST FLEXSPLINE GEAR PARTS WITH COMPLEX THIN WALLED GEOMETRIES, IMPROVED PROPERTIES AND DIMENSIONS SUITABLE FOR EUROPA LANDER AND KENNEDY SPACE CENTER AND OTHER NASA S LOCATIONS. BEYOND SPACE APPLICATIONS, THE USE OF VERSATILE THERMOPLASTIC FORMING PROCESSES FOR PRECISION GEARS HAS A STRONG POTENTIAL TO BRING COST SAVINGS FOR A WIDE RANGE OF INDUSTRIES THAT USE ROBOTIC MECHANISMS.
National Aeronautics and Space Administration · NAICS 541715 · Apr 2018 – Aug 2021 · official record ↗
- FA865019C5093$750K
DEVELOPMENT OF BULK METALLIC GLASS FOR SPACECRAFT APPLICATIONS USING THERMOPLASTIC FORMING
Department of the Air Force · NAICS 541715 · May 2019 – Nov 2021 · official record ↗
- FA864922P0817$750K
SUPERIOR SATELLITE HINGES WITH BULK METALLIC GLASS TECHNOLOGY
Department of the Air Force · NAICS 541715 · Mar 2022 – May 2024 · official record ↗
- FA864921P1109$50K
SUPERIOR SATELLITE HINGES WITH BULK METALLIC GLASS TECHNOLOGY
Department of the Air Force · NAICS 541715 · May 2021 – Aug 2021 · official record ↗
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