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Researcher
- Corson Cramer
- Steve Bullock
- Michael Kirka
- Greg Larsen
- James Klett
- Rangasayee Kannan
- Ryan Dehoff
- Trevor Aguirre
- Adam Stevens
- Christopher Ledford
- Hongbin Sun
- Peeyush Nandwana
- Prashant Jain
- Vlastimil Kunc
- Ahmed Hassen
- Alexander I Wiechert
- Alice Perrin
- Amir K Ziabari
- Andrew F May
- Ben Garrison
- Benjamin Manard
- Beth L Armstrong
- Brad Johnson
- Brandon A Wilson
- Brian Post
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- Christopher Hershey
- Christopher Hobbs
- Costas Tsouris
- Craig Blue
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- Fred List III
- Govindarajan Muralidharan
- Hsin Wang
- Ian Greenquist
- Ilias Belharouak
- Isaac Sikkema
- Joanna Mcfarlane
- John Lindahl
- Jonathan Willocks
- Jordan Wright
- Joseph Olatt
- Keith Carver
- Kunal Mondal
- Mahim Mathur
- Matt Kurley III
- Matt Vick
- Mike Zach
- Mingyan Li
- Nadim Hmeidat
- Nate See
- N Dianne Ezell
- Nedim Cinbiz
- Nithin Panicker
- Oscar Martinez
- Patxi Fernandez-Zelaia
- Philip Bingham
- Pradeep Ramuhalli
- Praveen Cheekatamarla
- Richard Howard
- Rodney D Hunt
- Roger G Miller
- Rose Montgomery
- Ruhul Amin
- Ryan Heldt
- Sam Hollifield
- Sana Elyas
- Sarah Graham
- Singanallur Venkatakrishnan
- Steven Guzorek
- Sudarsanam Babu
- Thomas Butcher
- Thomas R Muth
- Tomonori Saito
- Tony Beard
- Tyler Gerczak
- Ugur Mertyurek
- Vandana Rallabandi
- Venugopal K Varma
- Vincent Paquit
- Vishaldeep Sharma
- Vittorio Badalassi
- William Peter
- Yan-Ru Lin
- Ying Yang
- Yukinori Yamamoto

High-gradient magnetic filtration (HGMF) is a non-destructive separation technique that captures magnetic constituents from a matrix containing other non-magnetic species. One characteristic that actinide metals share across much of the group is that they are magnetic.

The technologies provide additively manufactured thermal protection system.

The invention presented here addresses key challenges associated with counterfeit refrigerants by ensuring safety, maintaining system performance, supporting environmental compliance, and mitigating health and legal risks.

A pressure burst feature has been designed and demonstrated for relieving potentially hazardous excess pressure within irradiation capsules used in the ORNL High Flux Isotope Reactor (HFIR).

This invention focuses on improving the ceramic yield of preceramic polymers by tuning the crosslinking process that occurs during vat photopolymerization (VP).

Sintering additives to improve densification and microstructure control of UN provides a facile approach to producing high quality nuclear fuels.

A novel approach is presented herein to improve time to onset of natural convection stemming from fuel element porosity during a failure mode of a nuclear reactor.

Using all polymer formulations, the PIP densification is improved almost 70% over traditional preceramic polymers and PIP material leading to cost and times saving for densifying ceramic composites made from powder or fibers.

The technologies provide a system and method of needling of veiled AS4 fabric tape.

Currently there is no capability to test materials, sensors, and nuclear fuels at extremely high temperatures and under radiation conditions for nuclear thermal rocket propulsion or advanced reactors.