Min ZhouView profile
Professor
Min Zhou is a Professor at Georgia Institute of Technology, holding a joint appointment in the School of Materials Science and Engineering and the School of Mechanical Engineering. He joined Georgia Tech in 1995 as an Assistant Professor and has since contributed extensively to research in material behavior across multiple scales. His work focuses on microstructure effects, nanoscale deformation, and multiscale modeling, using computational and experimental methods like finite elements and molecular dynamics. Education: Ph.D., Brown University, 1993 Sc.M., Brown University, 1990 M.S., Beijing University of Aeronautics and Astronautics, 1985 B.S., Taiyuan Heavy Machinery Institute, China, 1982 Research Interests: Dr. Zhou’s research spans biomolecular-solids, ceramics, composites, metals, and nanostructures. He investigates microstructure-driven phenomena in heterogeneous materials, energy dissipation in composites, and thermal-mechanical-chemical coupling. His experimental tools include laser interferometry and novel digital diagnostics, while computational approaches emphasize equivalent continuum models and multiscale simulations. Key Contributions: Recent work includes advancing microscale models for intergranular damage, detonation behavior in energetic materials, and piezoelectric/flexoelectric composites. He has developed an equivalent continuum framework linking molecular dynamics and continuum mechanics. Awards: American Society of Mechanical Engineers Fellow (2005) Woodruff School Faculty Fellow (2004–2008) Sigma Xi Georgia Tech Chapter Best Paper Award (2004) NSF Faculty Early Career Award (2000–2005) Advising & Grants: Current projects include NASA-funded research on metallic nanowires and Air Force-sponsored work on multifunctional energetic materials. He maintains a lab with advanced facilities like split Hopkinson pressure bars and torsion-compression testing systems. Labs & Teams: His research group focuses on dynamic material response and failure mechanisms, with collaborations in energy storage, nanomaterials, and bioinspired materials design.









