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Researcher
- Ahmed Hassen
- Vlastimil Kunc
- Steve Bullock
- Soydan Ozcan
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- Corson Cramer
- Vipin Kumar
- Ali Passian
- Halil Tekinalp
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- Umesh N MARATHE
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- Beth L Armstrong
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- Greg Larsen
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- Katie Copenhaver
- Nadim Hmeidat
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- Tyler Smith
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- Brittany Rodriguez
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- Hsuan-Hao Lu
- Jaswinder Sharma
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- Nihal Kanbargi
- Pum Kim
- Sanjita Wasti
- Segun Isaac Talabi
- Subhabrata Saha
- Xianhui Zhao
- Adam Stevens
- Adwoa Owusu
- Akash Phadatare
- Amber Hubbard
- Anees Alnajjar
- Arit Das
- Benjamin L Doughty
- Ben Lamm
- Brian Williams
- Cait Clarkson
- Charlie Cook
- Christopher Bowland
- Christopher Hershey
- Christopher Ledford
- Claire Marvinney
- Daniel Rasmussen
- David J Mitchell
- Dustin Gilmer
- Edgar Lara-Curzio
- Erin Webb
- Evin Carter
- Felix L Paulauskas
- Frederic Vautard
- Gabriel Veith
- Harper Jordan
- Holly Humphrey
- Jeremy Malmstead
- Jesse Heineman
- Joel Asiamah
- Joel Dawson
- Jordan Wright
- Josh Crabtree
- Julian Charron
- Khryslyn G Araño
- Kim Sitzlar
- Kitty K Mccracken
- Komal Chawla
- Mariam Kiran
- Marm Dixit
- Merlin Theodore
- Michael Kirka
- Nance Ericson
- Oluwafemi Oyedeji
- Paritosh Mhatre
- Robert E Norris Jr
- Ryan Ogle
- Sana Elyas
- Santanu Roy
- Shajjad Chowdhury
- Srikanth Yoginath
- Sudarsanam Babu
- Sumit Gupta
- Thomas Feldhausen
- Tolga Aytug
- Tomonori Saito
- Tony Beard
- Uvinduni Premadasa
- Varisara Tansakul
- Vera Bocharova

The technology will offer supportless DIW of complex structures using vinyl ester resin, facilitated by multidirectional 6 axis printing.

Efficient thermal management in polymers is essential for developing lightweight, high-strength materials with multifunctional capabilities.

We have developed a novel extrusion-based 3D printing technique that can achieve a resolution of 0.51 mm layer thickness, and catalyst loading of 44% and 90.5% before and after drying, respectively.

The disclosure is directed to optimized fiber geometries for use in carbon fiber reinforced polymers with increased compressive strength per unit cost. The disclosed fiber geometries reduce the material processing costs as well as increase the compressive strength.

Here we present a solution for practically demonstrating path-aware routing and visualizing a self-driving network.

Technologies directed to polarization agnostic continuous variable quantum key distribution are described.
Contact:
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.

The development of quantum networking requires architectures capable of dynamically reconfigurable entanglement distribution to meet diverse user needs and ensure tolerance against transmission disruptions.

The technologies provide additively manufactured thermal protection system.

Wind turbine blades face a harsh environment in which erosion of the leading edge is a major factor for in-use maintenance. Current industrial practices to address this leading edge erosion are replacement of reinforcing materials upon significant damage infliction.

This manufacturing method uses multifunctional materials distributed volumetrically to generate a stiffness-based architecture, where continuous surfaces can be created from flat, rapidly produced geometries.