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Researcher
- Amit K Naskar
- Yong Chae Lim
- Zhili Feng
- Andrzej Nycz
- Chris Masuo
- Jaswinder Sharma
- Jian Chen
- Logan Kearney
- Luke Meyer
- Michael Toomey
- Nihal Kanbargi
- Rangasayee Kannan
- Wei Zhang
- William Carter
- Adam Stevens
- Alex Walters
- Arit Das
- Benjamin L Doughty
- Brian Post
- Bruce Hannan
- Bryan Lim
- Christopher Bowland
- Dali Wang
- Edgar Lara-Curzio
- Felix L Paulauskas
- Frederic Vautard
- Holly Humphrey
- Jiheon Jun
- Joshua Vaughan
- Loren L Funk
- Peeyush Nandwana
- Peter Wang
- Polad Shikhaliev
- Priyanshi Agrawal
- Robert E Norris Jr
- Roger G Miller
- Ryan Dehoff
- Santanu Roy
- Sarah Graham
- Sudarsanam Babu
- Sumit Gupta
- Theodore Visscher
- Tomas Grejtak
- Uvinduni Premadasa
- Vera Bocharova
- Vladislav N Sedov
- William Peter
- Yacouba Diawara
- Yiyu Wang
- Yukinori Yamamoto

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

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.

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

A novel and cost-effective process for the activation of carbon fibers was established.
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.

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

ORNL has developed a large area thermal neutron detector based on 6LiF/ZnS(Ag) scintillator coupled with wavelength shifting fibers. The detector uses resistive charge divider-based position encoding.

A new nanostructured bainitic steel with accelerated kinetics for bainite formation at 200 C was designed using a coupled CALPHAD, machine learning, and data mining approach.

ORNL contributes to developing the concept of passive CO2 DAC by designing and testing a hybrid sorption system. This design aims to leverage the advantages of CO2 solubility and selectivity offered by materials with selective sorption of adsorbents.