Filippo Berto

Pubblicazioni

Le pubblicazioni dell'autore sono raggiungibili sul catalogo IRIS tramite il seguente link

Interessi di ricerca

Filippo Berto is Chair of Mechanics of Materials at La Sapienza University of Rome, Department of Chemical Engineering, Materials and Environment.

He has been international chair in fracture mechanics, fatigue, and structural integrity at the Norwegian University of Science and Technology of Trondheim, Norway, since beginning of 2015. He was professor of machine design at the University of Padua, Italy, between 2006 and 2014. He is chairman of the technical committee ESIS TC15 on Structural Integrity of additive manufactured components of European Structural Integrity Society. Filippo Berto received several awards and distinctions, such as Award of Merit (2018) and Wohler medal (2020) from the European Structural Integrity Society. He has received the Stephen Timoshenko Fellow (2018) given by University of Stanford (USA). He belongs to the editorial board of several leading scientific journals in the area of fatigue, fracture and structural integrity, such as, Materials & Design, Materials Science and Engineering: A, Advanced Engineering Materials, Polymer Testing, Strength of Materials, among others. Filippo Berto is also voting member of ASTM F42 on Additive Manufacturing Technologies and ASTM E08 on Metal Fatigue and Fracture. As technical Chair of TC15 is also the founder of the series of European conferences on additive manufacturing ESIAM. In 2020 he has been one of the founders of TC18 of ESIS dedicated to the structural integrity of welded structures. Filippo Berto has a major role in the Italian Group of Fracture being president from 2021 to 2025, vice-president since September 2025, and co-editor in chief of the associated journal. He is also vice-president of the European Society of Structural Integrity since June 2022.

Selected publications

1. Berto, F., Lazzarin, P. Recent developments in brittle and quasi-brittle failure assessment of engineering materials by means of local approaches (2014) Materials Science and Engineering R: Reports, 75 (1), pp. 1-48. Impact Factor 36.5

2. Wu, W., Hu, W., Qian, G., Liao, H., Xu, X., Berto, F. Mechanical design and multifunctional applications of chiral mechanical metamaterials (2019) Materials and Design, 180, art. no. 107950. Impact Factor 9.4

3. Benedetti, M., du Plessis, A., Ritchie, R.O., Dallago, M., Razavi, S.M.J., Berto, F. Architected cellular materials: A review on their mechanical properties towards  fatigue-tolerant design and fabrication (2021) Materials Science and Engineering R: Reports, 144, art. no. 100606 Impact Factor 36.5

4. du Plessis, A., Razavi, S.M.J., Benedetti, M., Murchio, S., Leary, M., Watson, M., Bhate, D., Berto, F. Properties and applications of additively manufactured metallic cellular materials (2022) Progress in Materials Science, 125, art. no. 100918, . Impact Factor 48.2

5. Zhang, M., Zhao, N., Yu, Q., Liu, Z., Qu, R., Zhang, J., Li, S., Ren, D., Berto, F., Zhang, Z., Ritchie, R.O. On the damage tolerance of 3-D printed Mg-Ti interpenetrating-phase composites with bioinspired architectures (2022) Nature Communications, 13 (1), art. no. 3247. Impact Factor 17.7

6. W. Wu, R. Xia, G. Qian, Z. Liu, J. Razavi F. Berto H. Gao Mechanostructures: rational mechanical design, fabrication, performance evaluation, and industrial application of advanced structures (2022) Progress in Materials Science, https://doi.org/10.1016/j.pmatsci.2022.101021, Impact Factor 48.2

 

 

 

Keywords

cyclic fatigue
Fracture mechanics
structural integrity
bioinspired materials
metallurgy

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