Publications
You can also find publications on Google Scholar.
Refereed journal articles
- F. Masi. “Learning inelastic constitutive models from stress–strain data under hard thermodynamic constraints.” Computer Methods in Applied Mechanics and Engineering, 1(1), 1 (2026). DOI · Code
- F. Masi and I. Einav. “Hydrodynamics of fault gouges from constitutive modelling to the physics of friction.” Journal of Geophysical Research: Solid Earth, 130(7), e2024JB030822 (2025). DOI · Code
- A. Morsel, F. Masi, P. Kotronis, and I. Stefanou. “Measurement, self-similarity, and TNT equivalence of blasts from exploding wires.” Shock Waves, 35(1), 17–35 (2025). DOI
- A. Morsel, F. Masi, E. Marché, G. Racineux, P. Kotronis, and I. Stefanou. “miniBLAST: a novel experimental setup for laboratory testing of structures under blast loads.” Experimental Techniques, 49(4), 655–675 (2025). DOI
- F. Masi and I. Einav. “Neural integration for constitutive equations using small data.” Computer Methods in Applied Mechanics and Engineering, 420, 116698 (2024). DOI · Code
- F. Masi and I. Stefanou. “Evolution TANN and the identification of internal variables and evolution equations in solid mechanics.” Journal of the Mechanics and Physics of Solids, 174, 105245 (2023). DOI
- F. Masi and I. Stefanou. “Multiscale modeling of inelastic materials with Thermodynamics-based Artificial Neural Networks (TANN).” Computer Methods in Applied Mechanics and Engineering, 398, 115190 (2022). DOI · Code
- F. Masi, I. Stefanou, and V. Maffi-Berthier. “Scaling laws for rigid-body response of masonry structures under blast loads.” Journal of Engineering Mechanics, 147(10), 04021078 (2021). DOI
- F. Masi, I. Stefanou, P. Vannucci, and V. Maffi-Berthier. “Thermodynamics-based Artificial Neural Networks for constitutive modeling.” Journal of the Mechanics and Physics of Solids, 147, 104277 (2021). DOI
- F. Masi, I. Stefanou, V. Maffi-Berthier, and P. Vannucci. “A Discrete Element Method based-approach for arched masonry structures under blast loads.” Engineering Structures, 216, 110721 (2020). DOI
- F. Masi, I. Stefanou, P. Vannucci, and V. Maffi-Berthier. “Resistance of museum artefacts against blast loading.” Journal of Cultural Heritage, 44, 163–173 (2020). DOI
- P. Vannucci, F. Masi, and I. Stefanou. “A nonlinear approach to the wind strength of Gothic Cathedrals: The case of Notre Dame of Paris.” Engineering Structures, 183, 860–873 (2019). DOI
- F. Masi, I. Stefanou, P. Vannucci, and V. Maffi-Berthier. “Rocking response of inverted pendulum structures under blast loading.” International Journal of Mechanical Sciences, 157–158, 833–848 (2019). DOI
- F. Masi, I. Stefanou, and P. Vannucci. “A study on the effects of an explosion in the Pantheon of Rome.” Engineering Structures, 164, 259–273 (2018). DOI
- F. Masi, P. M. Mariano, and P. Vannucci. “Blast actions in aircrafts: An integrated methodology for designing protection devices.” Engineering Structures, 175, 895–911 (2018). DOI
- F. Masi, I. Stefanou, and P. Vannucci. “On the origin of the cracks in the dome of the Pantheon in Rome.” Engineering Failure Analysis, 92, 587–596 (2018). DOI
Book chapters
- F. Masi. “Introduction to Regression Methods.” In Machine Learning in Geomechanics 1. John Wiley & Sons, Ltd, 2024. DOI
- F. Masi and I. Stefanou. “Physics-Informed and Thermodynamics-Based Neural Networks.” In Machine Learning in Geomechanics 2. John Wiley & Sons, Ltd, 2024. DOI
