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Researcher
- Vivek Sujan
- Steve Bullock
- Corson Cramer
- Adam Siekmann
- Ahmed Hassen
- Greg Larsen
- James Klett
- Nadim Hmeidat
- Omer Onar
- Subho Mukherjee
- Trevor Aguirre
- Venugopal K Varma
- Vlastimil Kunc
- Erdem Asa
- Isabelle Snyder
- Mahabir Bhandari
- Steven Guzorek
- Adam Aaron
- Beth L Armstrong
- Brittany Rodriguez
- Charles D Ottinger
- Charlie Cook
- Christopher Hershey
- Christopher Ledford
- Craig Blue
- Dan Coughlin
- Daniel Rasmussen
- David J Mitchell
- David Nuttall
- Dustin Gilmer
- Govindarajan Muralidharan
- Hyeonsup Lim
- John Lindahl
- Jordan Wright
- Michael Kirka
- Rose Montgomery
- Sana Elyas
- Sergey Smolentsev
- Shajjad Chowdhury
- Subhabrata Saha
- Thomas R Muth
- Tomonori Saito
- Tony Beard
- Tyler Smith
- Vipin Kumar

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

The growing demand for electric vehicles (EVs) has necessitated significant advancements in EV charging technologies to ensure efficient and reliable operation.

The growing demand for renewable energy sources has propelled the development of advanced power conversion systems, particularly in applications involving fuel cells.

The technologies provide additively manufactured thermal protection system.

Reflective and emissive surfaces are designed with heat retention as opposed to the current state of the art oven and furnaces which use non-reflective surfaces. Heat is absorbed and transferred to the exterior of the heated appliances.

This invention focuses on improving the ceramic yield of preceramic polymers by tuning the crosslinking process that occurs during vat photopolymerization (VP).

This invention presents a multiport converter (MPC) based power supply to charge the 12 V and 24 V auxiliary batteries in heavy duty (HD) fuel cell (FC) electric vehicle (EV) power train.

Using all polymer formulations, the PIP densification is improved almost 70% over traditional preceramic polymers and PIP material leading to cost and times saving for densifying ceramic composites made from powder or fibers.

Fusion reactors need efficient systems to create tritium fuel and handle intense heat and radiation. Traditional liquid metal systems face challenges like high pressure losses and material breakdown in strong magnetic fields.