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3D Printed Pool Water Cooler for Medical Isotope Test Reactor Passes Factory Acceptance

🇨🇳 GN 3D打印 (CN)3D PrintingTue, 14 Apr 2026 07:00:00 GMT· translated & edited
3D Printed Pool Water Cooler for Medical Isotope Test Reactor Passes Factory Acceptance

A pool water cooler manufactured using additive manufacturing for a medical isotope experimental reactor has successfully completed factory acceptance testing.

A critical component for a medical isotope experimental reactor, a pool water cooler produced through additive manufacturing, has passed its factory acceptance tests. This marks a significant milestone in the integration of advanced manufacturing techniques into the nuclear industry.

The pool water cooler is designed to manage the temperature of the water within the reactor's pool, a crucial function for the safe and efficient operation of the facility. The use of additive manufacturing, commonly known as 3D printing, for this component signifies a move towards more complex and customized part production in a highly regulated sector.

The successful completion of the factory acceptance testing indicates that the 3D printed cooler meets all the stringent performance and safety requirements necessary for its intended application. This development highlights the growing capability of additive manufacturing to produce functional, high-stakes components for specialized industries.

While specific details regarding the materials used or the exact additive manufacturing process employed were not disclosed, the successful deployment of such a component suggests a maturation of the technology for nuclear applications. This achievement could pave the way for further adoption of additive manufacturing in the production of other reactor parts and related infrastructure.

Editor's Analysis — through the multi-planetary lens

This development showcases the increasing reliability and applicability of additive manufacturing for critical infrastructure in demanding sectors like nuclear energy. Utilizing 3D printing for components like a pool water cooler can lead to faster production, reduced material waste, and the creation of optimized designs not possible with traditional methods. This aligns with the broader trend of leveraging AM for complex, high-value parts in industries requiring precision and safety.

Original headline: 医用同位素试验堆增材制造池水冷却器完成出厂验收 - 中国核技术网
Read the full story at GN 3D打印 (CN) →

Edited by the news editor with AI and translated into English from the original report — please refer to the original source.

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