Annular Linear Induction Pump (ALIP)
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NANO Nuclear Completes Initial Full-System Testing of its Patent-Pending, Proprietary Annular Linear Induction Pump Technology, Validating Key Design Features Designed for Long-Term Operational Durability
Globenewswire· 2025-11-19 13:00
Core Insights - NANO Nuclear Energy Inc. has successfully completed the first full tests of its proprietary Annular Linear Induction Pump (ALIP) at fluid temperatures of up to 350°C, marking significant progress towards commercialization [1][6][9] Technology Development - The ALIP is designed for thermal management in advanced nuclear energy platforms, utilizing high boiling-point coolants like molten salts and liquid metals, and employs electromagnetic pumping mechanisms for enhanced reliability [2][5] - Testing was conducted in collaboration with aRoboticsCompany to validate new features aimed at maximizing the pump's lifespan in maintenance-free environments such as space and nuclear applications [5][6] Commercialization Progress - The successful testing phase validates the core design and durability of the ALIP, positioning the company to advance towards pre-commercialization activities [6][8] - NANO Nuclear plans to enhance the ALIP's reliability and efficiency while reducing production costs through precision manufacturing processes and electromagnetic quality control systems [7][9] Future Outlook - The company is preparing to move into the next phase of the ALIP commercialization program, aiming to position the technology as a zero-maintenance alternative to mechanical molten-metal pumps for both terrestrial and space applications [8][9] - NANO Nuclear's long-term roadmap includes the development of various advanced nuclear technologies, including the KRONOS MMR™ Energy System and the portable LOKI MMR™ for space applications [10][11][15]
NANO Nuclear Completes Initial Full-System Testing of its Patent-Pending, Proprietary Annular Linear Induction Pump Technology Validating Key Design Features Designed for Long-Term Operational Durability
Newsfile· 2025-11-19 12:59
Core Insights - NANO Nuclear Energy Inc. has successfully completed initial full-system testing of its proprietary Annular Linear Induction Pump (ALIP), validating key design features aimed at long-term operational durability [1][5] - The ALIP is designed for advanced small and micro modular reactor applications, utilizing high boiling-point, high thermal-conductivity coolants [2][7] - The testing was conducted in collaboration with aRoboticsCompany, focusing on enhancing the pump's lifespan in maintenance-free environments such as space and undersea applications [4][5] Technology Development - The ALIP functions as a thermal management and distribution system, employing electromagnetic pumping mechanisms to improve reliability and reduce maintenance needs [2][9] - Recent tests confirmed the effectiveness of design modifications aimed at increasing magnetic field strength and overall system performance [5][9] - A full stack of precision manufacturing processes and electromagnetic quality control systems were validated, ensuring consistent production of ALIPs [6] Commercialization Progress - NANO Nuclear is moving towards the next phase of its ALIP commercialization program, positioning the technology as a zero-maintenance alternative to mechanical pumps [7][9] - The company aims to enhance the reliability, lifespan, and efficiency of the ALIP while reducing production costs [6] - The successful testing outcomes are expected to guide future design decisions and strengthen the company's long-term development roadmap [9] Company Overview - NANO Nuclear Energy Inc. is focused on becoming a diversified and vertically integrated company across multiple business lines, including microreactor technologies and nuclear fuel fabrication [10][11] - The company is developing several advanced reactor products, including the KRONOS MMR™ Energy System and the portable LOKI MMR™, aimed at clean energy solutions [11] - NANO Nuclear's subsidiaries are working on various aspects of the nuclear energy supply chain, including fuel transportation and space applications [12][14]
NANO Nuclear Energy Completes Retrofit of its New York State Nuclear Technology Testing Facility
Globenewswire· 2025-05-07 12:30
Core Viewpoint - NANO Nuclear Energy Inc. has completed the retrofitting of its multimillion-dollar demonstration and testing facility in Westchester County, New York, which will support the development and testing of its microreactors and the Annular Linear Induction Pump (ALIP) subsystem [1][2][5] Group 1: Facility Overview - The newly redeveloped facility will conduct non-nuclear mechanical and thermal tests essential for developing microreactors, particularly the ZEUS model, and commercial products like ALIP [2][9] - The facility includes a Liquid-Metal and Molten-Salt Test Loop, a magnetic field mapping system, and a custom-engineered thermal chamber for evaluating component performance [8][9] Group 2: Collaboration and Development - The retrofit was executed in collaboration with aRobotics Company, which specializes in robotic systems and high-precision prototyping, enhancing the facility's capabilities [3][5] - The facility is expected to play a crucial role in the R&D program, allowing for essential physical testing and validation of non-nuclear systems [5][9] Group 3: Strategic Importance - The facility will serve as a high-fidelity mechanical testbed for subsystems critical to reactor operation, informing future licensing and supporting industrial partnerships [9][10] - The proximity of the facility to NANO Nuclear's corporate headquarters in New York City will enhance operational coordination and collaboration with stakeholders [10] Group 4: Company Vision and Products - NANO Nuclear aims to become a diversified and vertically integrated company across five business lines, including portable microreactor technologies and nuclear fuel fabrication [10][11] - The company is developing several advanced reactor products, including the KRONOS MMR Energy System and the portable LOKI MMR, focusing on clean energy solutions [11][12]