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Researcher
- Soydan Ozcan
- Halil Tekinalp
- Meghan Lamm
- Vlastimil Kunc
- Ahmed Hassen
- Umesh N MARATHE
- Dan Coughlin
- Katie Copenhaver
- Steven Guzorek
- Uday Vaidya
- Vipin Kumar
- Yong Chae Lim
- Zhili Feng
- Alexey Serov
- Alex Roschli
- Beth L Armstrong
- Brian Post
- David Nuttall
- Georges Chahine
- Jaswinder Sharma
- Jian Chen
- Matt Korey
- Nadim Hmeidat
- Pum Kim
- Rangasayee Kannan
- Sanjita Wasti
- Steve Bullock
- Tyler Smith
- Wei Zhang
- Xiang Lyu
- Xianhui Zhao
- Adam Stevens
- Adwoa Owusu
- Akash Phadatare
- Amber Hubbard
- Amit K Naskar
- Ben Lamm
- Brittany Rodriguez
- Bryan Lim
- Cait Clarkson
- Dali Wang
- Erin Webb
- Evin Carter
- Gabriel Veith
- Georgios Polyzos
- Holly Humphrey
- James Szybist
- Jeremy Malmstead
- Jesse Heineman
- Jiheon Jun
- Jim Tobin
- Jonathan Willocks
- Josh Crabtree
- Junbin Choi
- Khryslyn G Araño
- Kim Sitzlar
- Kitty K Mccracken
- Logan Kearney
- Marm Dixit
- Michael Toomey
- Michelle Lehmann
- Nihal Kanbargi
- Oluwafemi Oyedeji
- Paritosh Mhatre
- Peeyush Nandwana
- Priyanshi Agrawal
- Ritu Sahore
- Roger G Miller
- Ryan Dehoff
- Sana Elyas
- Sarah Graham
- Segun Isaac Talabi
- Shajjad Chowdhury
- Subhabrata Saha
- Sudarsanam Babu
- Todd Toops
- Tolga Aytug
- Tomas Grejtak
- William Peter
- Yiyu Wang
- Yukinori Yamamoto

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

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.

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

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.

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.

We proposed and developed a carbon nanofiber (CNF) suspension-based sizing agent, that resulted in improved interfacial, and mechanical properties. The CNF dispersed sizing agent can be applied in a relatively simpler way (by passing the continuous tow through it).

This invention is directed to a machine leaning methodology to quantify the association of a set of input variables to a set of output variables, specifically for the one-to-many scenarios in which the output exhibits a range of variations under the same replicated input condi

An electrochemical cell has been specifically designed to maximize CO2 release from the seawater while also not changing the pH of the seawater before returning to the sea.

The technologies polymer cellulose nanocomposite mats and process for making same.
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.

The ORNL invention addresses the challenge of poor mechanical properties of dry processed electrodes, improves their electrical properties, while improving their electrochemical performance.