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Researcher
- Ahmed Hassen
- Vlastimil Kunc
- Steve Bullock
- Soydan Ozcan
- Steven Guzorek
- Corson Cramer
- Ilias Belharouak
- Kashif Nawaz
- Vipin Kumar
- Halil Tekinalp
- Meghan Lamm
- Brian Post
- David Nuttall
- Joe Rendall
- Uday Vaidya
- Umesh N MARATHE
- Zhiming Gao
- Beth L Armstrong
- Dan Coughlin
- Greg Larsen
- James Klett
- Kai Li
- Katie Copenhaver
- Nadim Hmeidat
- Praveen Cheekatamarla
- Trevor Aguirre
- Tyler Smith
- Vishaldeep Sharma
- Alexey Serov
- Alex Roschli
- Ali Abouimrane
- Brittany Rodriguez
- Craig Blue
- Georges Chahine
- Hongbin Sun
- James Manley
- Jamieson Brechtl
- Jaswinder Sharma
- Jim Tobin
- John Lindahl
- Kyle Gluesenkamp
- Marm Dixit
- Matt Korey
- Mingkan Zhang
- Pum Kim
- Ruhul Amin
- Sanjita Wasti
- Segun Isaac Talabi
- Subhabrata Saha
- Xiang Lyu
- Xianhui Zhao
- Adam Stevens
- Adwoa Owusu
- Akash Phadatare
- Amber Hubbard
- Amit K Naskar
- Ben Lamm
- Ben LaRiviere
- Bo Shen
- Brian Fricke
- Cait Clarkson
- Charlie Cook
- Cheng-Min Yang
- Christopher Hershey
- Christopher Ledford
- Daniel Rasmussen
- David J Mitchell
- David L Wood III
- Dustin Gilmer
- Easwaran Krishnan
- Erin Webb
- Evin Carter
- Gabriel Veith
- Georgios Polyzos
- Holly Humphrey
- Huixin (anna) Jiang
- James Szybist
- Jeremy Malmstead
- Jesse Heineman
- Jonathan Willocks
- Jordan Wright
- Josh Crabtree
- Julian Charron
- Junbin Choi
- Khryslyn G Araño
- Kim Sitzlar
- Kitty K Mccracken
- Komal Chawla
- Logan Kearney
- Lu Yu
- Melanie Moses-DeBusk Debusk
- Merlin Theodore
- Michael Kirka
- Michael Toomey
- Michelle Lehmann
- Muneeshwaran Murugan
- Nance Ericson
- Nickolay Lavrik
- Nihal Kanbargi
- Oluwafemi Oyedeji
- Paritosh Mhatre
- Paul Groth
- Pengtao Wang
- Pradeep Ramuhalli
- Ritu Sahore
- Ryan Ogle
- Sana Elyas
- Shajjad Chowdhury
- Sudarsanam Babu
- Thomas Feldhausen
- Todd Toops
- Tolga Aytug
- Tomonori Saito
- Tony Beard
- Troy Seay
- Yaocai Bai
- Zhijia Du

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.

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

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.

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.

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.

This invention aims to develop a new feature for a heat pump water heater having a forced flow condenser, coupled with a mixing valve, and a new feature to maximize the first hour rating and provide quick response to hot water demand, comparable to a typical gas water heater.&

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).