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Researcher
- Ahmed Hassen
- Diana E Hun
- Vlastimil Kunc
- Kashif Nawaz
- Steven Guzorek
- Brian Post
- Amit Shyam
- Beth L Armstrong
- Kyle Gluesenkamp
- Peeyush Nandwana
- Som Shrestha
- Steve Bullock
- Vipin Kumar
- David Nuttall
- Joe Rendall
- Philip Boudreaux
- Sudarsanam Babu
- Tomonori Saito
- Zhiming Gao
- Alex Plotkowski
- Bo Shen
- Bryan Maldonado Puente
- Dan Coughlin
- Jun Qu
- Kai Li
- Nadim Hmeidat
- Nolan Hayes
- Praveen Cheekatamarla
- Rangasayee Kannan
- Soydan Ozcan
- Thomas Feldhausen
- Tyler Smith
- Venugopal K Varma
- Vishaldeep Sharma
- Yong Chae Lim
- Zhili Feng
- Zoriana Demchuk
- Adam Stevens
- Blane Fillingim
- Brittany Rodriguez
- Corson Cramer
- James A Haynes
- James Manley
- Jamieson Brechtl
- Jian Chen
- Jim Tobin
- Lauren Heinrich
- Mahabir Bhandari
- Meghan Lamm
- Melanie Moses-DeBusk Debusk
- Mingkan Zhang
- Peter Wang
- Pum Kim
- Ryan Dehoff
- Segun Isaac Talabi
- Shiwanka Vidarshi Wanasinghe Wanasinghe Mudiyanselage
- Subhabrata Saha
- Sumit Bahl
- Tomas Grejtak
- Uday Vaidya
- Umesh N MARATHE
- Wei Zhang
- Ying Yang
- Yousub Lee
- Achutha Tamraparni
- Adam Aaron
- Alex Roschli
- Alice Perrin
- Andre O Desjarlais
- Andres Marquez Rossy
- Ben Lamm
- Brian Fricke
- Bruce A Pint
- Bryan Lim
- Catalin Gainaru
- Charles D Ottinger
- Cheng-Min Yang
- Christopher Fancher
- Christopher Ledford
- Craig Blue
- Dali Wang
- David J Mitchell
- Dean T Pierce
- Dhruba Deka
- Easwaran Krishnan
- Erin Webb
- Ethan Self
- Evin Carter
- Gabriel Veith
- Georges Chahine
- Gerry Knapp
- Gina Accawi
- Glenn R Romanoski
- Gordon Robertson
- Govindarajan Muralidharan
- Gurneesh Jatana
- Halil Tekinalp
- Hongbin Sun
- Huixin (anna) Jiang
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- Jeremy Malmstead
- Jiheon Jun
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- Jovid Rakhmonov
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- Karen Cortes Guzman
- Katie Copenhaver
- Khryslyn G Araño
- Kim Sitzlar
- Kitty K Mccracken
- Komal Chawla
- Kuma Sumathipala
- Mark M Root
- Marm Dixit
- Matthew S Chambers
- Mengjia Tang
- Merlin Theodore
- Michael Kirka
- Muneeshwaran Murugan
- Nancy Dudney
- Natasha Ghezawi
- Navin Kumar
- Nicholas Richter
- Nickolay Lavrik
- Oluwafemi Oyedeji
- Pengtao Wang
- Priyanshi Agrawal
- Roger G Miller
- Rose Montgomery
- Ryan Ogle
- Sana Elyas
- Sarah Graham
- Sergiy Kalnaus
- Shajjad Chowdhury
- Sreshtha Sinha Majumdar
- Stephen M Killough
- Steven J Zinkle
- Sunyong Kwon
- Thomas R Muth
- Tim Graening Seibert
- Tolga Aytug
- Trevor Aguirre
- Troy Seay
- Tugba Turnaoglu
- Venkatakrishnan Singanallur Vaidyanathan
- Weicheng Zhong
- Wei Tang
- William Peter
- Xiang Chen
- Xianhui Zhao
- Xiaobing Liu
- Yanli Wang
- Yeonshil Park
- Yifang Liu
- Yifeng Hu
- Yiyu Wang
- Yukinori Yamamoto
- Yutai Kato
- Zhenglai Shen

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

We’ve developed a more cost-effective cable driven robot system for installing prefabricated panelized building envelopes. Traditional cable robots use eight cables, which require extra support structures, making setup complex and expensive.

A finite element approach integrated with a novel constitute model to predict phase change, residual stresses and part deformation.

Currently available cast Al alloys are not suitable for various high-performance conductor applications, such as rotor, inverter, windings, busbar, heat exchangers/sinks, etc.

US coastal and island communities have vulnerable energy infrastructure and high energy costs, which are exacerbated by climate change.

The invented alloys are a new family of Al-Mg alloys. This new family of Al-based alloys demonstrate an excellent ductility (10 ± 2 % elongation) despite the high content of impurities commonly observed in recycled aluminum.

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.

We have been working to adapt background oriented schlieren (BOS) imaging to directly visualize building leakage, which is fast and easy.

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.

Through utilizing a two function splice we can increase the splice strength for opposing tows.
Contact:
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.