The project focuses on optimizing the manufacturing of highly uniform, spherical thorium-232 kernels. Researchers will utilize droplet-based liquid-metal-jetting to refine particle production, drawing on previous prototypes developed by the laboratory. The scope of the work spans computational modeling, high-temperature process development, and rigorous material testing to ensure the scalability of the fuel production process.
Dr. Viktor Sukhotskiy, a principal investigator at the laboratory, noted that the initiative serves the dual purpose of solving complex nuclear fuel challenges while maturing liquid metal jetting as a manufacturing method. For Ampera, the collaboration is a critical step in vertically integrating its fuel supply. CEO Brian Matthews stated that developing this domestic capability is foundational to reducing cost and supply-chain risks for the company’s subcritical energy platforms.


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