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![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
ORNL has demonstrated an extrusion-based 3D-printing method to fabricate bonded magnets that recycles end-of-life bonded magnets to be used in a novel extrusion-compression molding method to create complex shapes.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
This invention rapidly and economically disassembles hard disk drives to recover critical rare earth elements, metals, printed circuit boards, and other constituents. Additionally, this invention destroys data on spinning disk platters.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
This invention provides suppression of weapon while also reducing the backpressure, flash, and energy absorbed during each shot.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
The invention relates to 3D printing and more specifically to methods of depositing material with a continuous toolpath.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
A method for obtaining high fiber volume fraction, long fiber injection molded articles is outlined herein.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
This invention aids in processing a material that cannot be made any other way because of limited dissolution meaning that liquid phase sintering does not work to achieve the same material.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
This invention aids in processing a material that cannot be made any other way because of limited dissolution meaning that liquid phase sintering does not work to achieve the same material.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
The Vacuum Safety Relief Valve (VSRV or "Flapper Valve") provides several key safety features not available commercially. First it works to ensure a vacuum vessel is only pumped or re-pumped when ready i.e. manual action.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
This invention aids in processing a material that has not been made before and has the potential to enhance the realm of reaction-bonded B4C- and SiC-based ceramics by mitigating ternary phases, fully infiltrating into the preform, and retaining its structure entirely from pre
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
Additively Manufactured boron carbide-aluminum (B4C-Al) / Isotopically Enriched Boron Carbide (10B)-aluminum Metal Matrix Composites have significant advantages over traditionally manufactured B4C (or 10B)-aluminum components.