About Us

Welcome to the Nuclear Oriented Materials & Examination (NOME) Laboratory at the University of Michigan. Our research focuses on three broad areas: (i) advanced manufacturing and alloy development: development of novel processing routes and compositions to obtain high performance alloys for nuclear energy applications, (ii) radiation effects and characterization: examination of the materials changes induced through radiation using advanced characterization techniques, and (iii) emerging technologies: rapid exploration of disruptive technologies including data analytics for nuclear energy applications.

We are a diverse and multidisciplinary team with backgrounds in nuclear engineering, materials science, physics, and mechanical engineering. Our laboratory leverages the vast resources at University of Michigan including the Michigan Ion Beam Laboratory and the Michigan Center for Materials Characterization. We also partner with external collaborators such as Idaho National Laboratory and Oak Ridge National Laboratory and use scientific user facilities such as the Nuclear Science User Facility to accomplish our research and development goals.

The NOME lab welcomes innovative thought and seeks to foster a culture that uses diversity and cross-cutting activities to springboard new innovations in nuclear materials.

Details on how to join NOME lab.

Projects

We work at the interface between materials synthesis, advanced characterization, and nuclear energy

*
Precipitate Stability and Helium Trapping in Advanced Steels

Precipitate Stability and Helium Trapping in Advanced Steels

Understanding helium and precipitation in steels.

Radiation Effects in Additive Manufactured Steels

Radiation Effects in Additive Manufactured Steels

Use MIBL and MC2 to conduct irradiation and post-irradiation examination of AM HT-9

Advance Castable Nanostructured Alloys for First-wall/Blanket Applications

Advance Castable Nanostructured Alloys for First-wall/Blanket Applications

Development of commercial grade Castable Nanostructured Alloys (CNAs) for fusion energy

Evaluation of Human-Bias in Machine Learning Models for Electron Microscopy

Evaluation of Human-Bias in Machine Learning Models for Electron Microscopy

Evaluating how human perception in ambiguous images impacts extrinsic errors in common machine learning frameworks for feature detection

Project SPACEMAN

Project SPACEMAN

Space Power Achieved via Carbon Extras in Manufactured Additively Nanocomposites

Real-time Microscopy Quantification Using Machine Learning

Real-time Microscopy Quantification Using Machine Learning

Applications of edge computing and machine learning to automatically identify features in micrographs

Wire Arc Additive Manufacturing of Nuclear Steels

Wire Arc Additive Manufacturing of Nuclear Steels

Optimizing processing parameters of wire arc additive manufactured nuclear steels.

Rapid Simulation of Irradiation Damage in PWR Internals

Rapid Simulation of Irradiation Damage in PWR Internals

Using ion beams to emulate neutron irradiation after preconditioning.

FeCrAl Handbook Development

FeCrAl Handbook Development

Develop and maintain the world leading resource of FeCrAl materials properties for nuclear power applications

Defect Detection Using Deep Learning

Defect Detection Using Deep Learning

Using machine vision techniques for rapid defect detection in electron microscopy images.

Simulating Neutrons Using Accelerated Ions

Simulating Neutrons Using Accelerated Ions

Using ion beams to emulate neutron irradiation.

Meet the NOME Lab team

Principal Investigators

Avatar

Kevin G. Field

Associate Professor

Radiation Effects, Advanced Alloys, Novel Manufacturing & Characterization, Data Analytics

Post Docs

Avatar

Dr. Charlie Hirst

Post Doctoral Fellow

Defects, Metallurgy, Radiation Damage, Characterization

Grad Students

Avatar

Ethan Polselli

Graduate Student

Radiation Effects, Advanced Nuclear Materials

Avatar

Gabriella Bruno

Graduate Student

Advanced Nuclear Materials, Advanced Reactor Design, Reactor Fuels

Avatar

Hangyu Li

Graduate Student

Characterization, Radiation Effects, Maching Learning

Avatar

Justin Hamil

Graduate Student

Radiation Effects, Advanced Alloys, Characterization, Metallography

Avatar

Mackenzie Warwick

Graduate Student

Radiation Effects in Coupled Extreme Environments, Characterization, Advanced Nuclear Materials, Computational Modeling and Simulations

Avatar

Matthew J. Lynch

Graduate Student

Machine Learning, Radiation Effects, Metal-nanomaterial composites, Nuclear Propulsion

Avatar

Robert Renfrow

Graduate Student

Advanced nuclear reactor structural materials, Novel materials characterization techniques, Effective research communication, Data analytics and visualization

Avatar

Tim Defranco

Graduate Student

Advanced Nuclear Materials, Hydrogen Storage Applications, Nuclear Thermal Propoulsion, Additive Manufacturing

Avatar

Wyatt Peterson

Graduate Student

Advanced Reactor Desgin, Additive Manufacturing, Advanced Nuclear Materials, Characterization

Undergraduates

Avatar

Benjamin Arms

Undergraduate

Radiation Effects, Advanced Reactors, Fusion, Reactor Safety Analysis

Avatar

Ian Steigerwald

Undergraduate

Fusion, Radiation Effects, Plasma

Alumni

Avatar

Daniel Román Torres

Undergraduate

Advanced Reactors Systems, Alternative Energy Systems, Combustion Engines

Avatar

Dr. Pengyuan Xiu

Graduate Student

Radiation Effects in Advanced Alloys, Advanced Characterization, Mechanical Behaviors of Irradiated Materials

Avatar

Dr. Priyam Patki

Post Doctoral Fellow

Radiation Effects, Characterization, Nanostructured Alloys, Nanomechanical Testing

Avatar

Dr. T.M. Kelsy Green

Graduate Student

Additive Manufacturing, Radiation Effects, Advanced Characterization

Avatar

Julianna Schoenwald

Undergraduate

Advanced Alloys, Radiation Effects

Avatar

Nicholas Clancy

Undergraduate

Radiation Effects, Cavity Analysis

Avatar

Rett Graham

Undergraduate

Additive Design, Engine Systems Design, Machine Learning, Data Analytics

Avatar

Steven Chen

Undergraduate

Thermal Hydraulics, Computational Physics, Advanced Reactors, Nuclear Materials

Avatar

Tommy (Chun Yin) Wong

Undergraduate

Radiation Effects, Fusion & Plasma-Facing Materials, Computational Materials Science, Machine Learning

Contact

  • 2355 Bonisteel Blvd, Ann Arbor, MI 48109
  • 2929 Cooley Bldg.