
Scientists at ORNL have developed a vacuum-assisted extrusion method that reduces internal porosity by up to 75% in large-scale 3D-printed polymer parts.
Scientists at ORNL have developed a vacuum-assisted extrusion method that reduces internal porosity by up to 75% in large-scale 3D-printed polymer parts.
The University of Oklahoma and Oak Ridge National Laboratory, the Department of Energy’s largest multi-program science and energy laboratory, have entered a strategic collaboration to establish a cutting-edge additive manufacturing center based in Norma
The German-American Frontiers of Engineering Symposium, hosted by the Department of Energy’s Oak Ridge National Laboratory, emphasized the importance of building relationships across national boundaries to tackle the world’s toughest engineering problem
Five scientists from the Department of Energy’s Oak Ridge National Laboratory — Ho Nyung Lee, David Graham, Andrew Sutton, Roger Rousseau and Troy Carter — have been elected fellows of the American Association for the Advancement of Science, or AAAS.
Scientists at ORNL have developed a method that can track chemical changes in molten salt in real time — helping to pave the way for the deployment of molten salt reactors for energy production.
Two scientists and an Innovation Crossroads alumna affiliated with ORNL were recognized by DOE’s Advanced Materials and Manufacturing Technologies Office last month for their contributions in manufacturing innovation for the nation’s energy sector.
A research partnership between two Department of Energy national laboratories has accelerated inspection of additively manufactured nuclear components, and the effort is now expanding to inspect nuclear fuels.
ORNL researchers created and tested two methods for transforming coal into the scarce mineral graphite, which is used in batteries for electric vehicles.
Scientists at the Department of Energy’s Oak Ridge National Laboratory recently demonstrated an autonomous robotic field monitoring, sampling and data-gathering system that could accelerate understanding of interactions among plants, soil and the enviro
ORNL researchers reached a significant milestone by building an entire 6.5-foot turbine blade tip using novel materials.