Dr YANG Lei 楊磊
Research Assistant Professor
Area of Specialization: Mechanics of materials; Impact dynamics; Constitutive modeling; Planetary defense
- FG625
Biography
Short Description
His research aims to see, understand, predict, and design the behavior of structural materials under extreme loading conditions (such as impact, shock and blast), through a combination of experiments, physics-based theoretical and computational modeling, artificial intelligence, and additive manufacturing. His goal is to ensure the success and safety of real-world applications in critical sectors where extreme loading scenarios prevail, such defense, energy, and space.
Selected Publications
- Yang, L., Kuwik, B. S., Singh, S., Ghosh, S., Moreno, J., Hurley, R., & Ramesh, K. T. (2025). A mechanism‐based constitutive model for competent rocks subjected to impact loading. Journal of Geophysical Research: Solid Earth, 130(5), e2024JB031101.
- Li, L., Kilic, V., Alemohammad, M., Yang, L., Ramesh, K. T., Foster, M. A., & Hufnagel, T. C. (2024). Shack–Hartmann wavefront sensing: A new approach to time-resolved measurement of the stress intensity factor during dynamic fracture. Mechanics of Materials, 194, 105010.
- Yang, L., Wu, S., Gao, K., & Shen, L. (2022). Simultaneous propagation of hydraulic fractures from multiple perforation clusters in layered tight reservoirs: Non-planar three-dimensional modelling. Energy, 254, 124483.
- Chilvers, J., Yang, L., Lin, X., & Zhang, Y. X. (2022). Experimental and numerical investigations of hybrid-fibre engineered cementitious composite panels under contact explosions. Engineering Structures, 266, 114582.
- Yang, L., Wang, G., Zhao, G. F., & Shen, L. (2020). A rate-and pressure-dependent damage-plasticity constitutive model for rock. International Journal of Rock Mechanics and Mining Sciences, 133, 104394.
- Yang, L., Lin, X., Li, H., & Gravina, R. J. (2019). A new constitutive model for steel fibre reinforced concrete subjected to dynamic loads. Composite Structures, 221, 110849.