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One-Piece Liquid Rocket Thrust Chamber Assembly Licensing Opportunity

NASA > NASA MARSHALL SPACE FLIGHT CENTERSol: T2P-MSFC-00052
est. $120K – $1.9M

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Quick Brief

NASA is seeking companies interested in licensing rights to commercialize, manufacture, and market a one-piece regeneratively-cooled thrust chamber assembly (TCA) for liquid rocket engines. The technology reduces weight and eliminates complex joints, enhancing safety and reliability.

Generated 57d ago

Scope & Requirements

Develop and commercialize a one-piece regeneratively-cooled thrust chamber assembly (TCA) for liquid rocket engines using 3D printing and large-scale additive manufacturing technologies.

Attachments

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Contract Details

Estimated Value
est. $120K – $1.9M
Similar contracts award $114K$1.9M (median $927K, 179 awards)Within typical range
NAICS Codes
Place of Performance
Huntsville, AL, USA

Agency & Contact

Contracting Organization

Agency
NATIONAL AERONAUTICS AND SPACE ADMINISTRATION
Sub-Agency
NATIONAL AERONAUTICS AND SPACE ADMINISTRATION
Office
NASA MARSHALL SPACE FLIGHT CENTER

Point of Contact

John A. Smith
Contracting Officer
(202) 555-0100

Key Dates

Published2mo ago
Mar 24, 2026
Last Updated2mo ago
Mar 24, 2026
Response Due2mo ago
Apr 8, 2026
Response Datein 9mo
Mar 2, 202715:00
CST

Description

NASA’s Technology Transfer Program solicits inquiries from companies interested in obtaining license rights to commercialize, manufacture and market the following technology. License rights may be issued on an exclusive or nonexclusive basis and may include specific fields of use. NASA provides no funding in conjunction with these potential licenses. THE TECHNOLOGY: NASA is developing a lightweight one-piece regeneratively-cooled thrust chamber assembly (TCA) for liquid rocket engines. Liquid rocket engines create thrust through the expansion of combusted propellants within the TCA. Standard manufacturing of TCAs involves individually building the injector, main combustion chamber and nozzle, and then bolting or welding the components together at the joints. However, potential seal failures in these complex joints can cause catastrophic explosions, as in the tragedy of the Space Shuttle Challenger. NASA researchers are eliminating complex joints by manufacturing a 1-piece TCA utilizing 3D printing and large-scale additive manufacturing technologies to directly deposit the nozzle onto the combustion chamber. And, by replacing a traditional solid metal jacket with a composite overwrap for support, the overall weight is reduced by over 40%. Developed under the Rapid Analysis and Manufacturing Propulsion Technology (RAMPT) project, NASA seeks public-private partnerships to develop specialized large-scale additive manufacturing vendors and accelerate reliable spaceflight hardware to the US supply chain. To express interest in this licensing opportunity, please submit a license application through NASA’s Automated Technology Licensing Application System (ATLAS) by visiting https://technology.nasa.gov/patent/MFS-TOPS-93 If you have any

questions, please e-mail NASA’s Technology Transfer Program at [email protected] with the title of this Technology Transfer Opportunity as listed in this SAM.gov notice and your preferred . For more information about licensing other NASA-developed technologies, please visit the NASA Technology Transfer Portal at https://technology.nasa.gov/ These responses are provided to members of NASA’s Technology Transfer Program for the purpose of promoting public awareness of NASA-developed technology products, and conducting preliminary market research to determine public interest in and potential for future licensing opportunities. No follow-on procurement is expected to result from responses to this Notice. Contracting (No Street Address

2) HUNTSVILLE, AL 35812 USA to this opportunity.

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