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Researcher
- Amit K Naskar
- Srikanth Yoginath
- James J Nutaro
- Jaswinder Sharma
- Logan Kearney
- Michael Toomey
- Nihal Kanbargi
- Pratishtha Shukla
- Stephen M Killough
- Sudip Seal
- Ali Passian
- Arit Das
- Benjamin L Doughty
- Bryan Maldonado Puente
- Christopher Bowland
- Corey Cooke
- Diana E Hun
- Edgar Lara-Curzio
- Felix L Paulauskas
- Frederic Vautard
- Harper Jordan
- Holly Humphrey
- Joel Asiamah
- Joel Dawson
- Nance Ericson
- Nolan Hayes
- Peter Wang
- Philip Boudreaux
- Robert E Norris Jr
- Ryan Kerekes
- Sally Ghanem
- Santanu Roy
- Sumit Gupta
- Uvinduni Premadasa
- Varisara Tansakul
- Vera Bocharova

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 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.

Digital twins (DTs) have emerged as essential tools for monitoring, predicting, and optimizing physical systems by using real-time data.

Simulation cloning is a technique in which dynamically cloned simulations’ state spaces differ from their parent simulation due to intervening events.

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.

This invention utilizes new techniques in machine learning to accelerate the training of ML-based communication receivers.

The invention addresses the long-standing challenge of inorganic phase change materials use in buildings envelope and other applications by encapsulating them in a secondary sheath.

The technologies described herein provides for the High Temperature Carbonization (HTC) in the manufacturing of carbon fibers (CF). The conventional method for HTC is based in thermal radiation and this technology uses in a liquid medium.