Filippo Berto
Filippo Berto
Renowned Chair and Distinguished Professor of Mechanics of Materials, Sapienza University of Rome
Verifisert e-postadresse på uniroma1.it - Startside
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Recent developments in brittle and quasi-brittle failure assessment of engineering materials by means of local approaches
F Berto, P Lazzarin
Materials Science and Engineering: R: Reports 75 (Volume 75, January 2014 …, 2014
A review of the volume-based strain energy density approach applied to V-notches and welded structures
F Berto, P Lazzarin
Theoretical and Applied Fracture Mechanics 52 (3), 183-194, 2009
Some expressions for the strain energy in a finite volume surrounding the root of blunt V-notches
P Lazzarin, F Berto
International Journal of fracture 135 (1), 161-185, 2005
Rapid calculations of notch stress intensity factors based on averaged strain energy density from coarse meshes: Theoretical bases and applications
P Lazzarin, F Berto, M Zappalorto
International Journal of Fatigue 32 (10), 1559-1567, 2010
Metal additive manufacturing in aerospace: A review
B Blakey-Milner, P Gradl, G Snedden, M Brooks, J Pitot, E Lopez, M Leary, ...
Materials & Design 209, 110008, 2021
Mechanical design and multifunctional applications of chiral mechanical metamaterials: A review
W Wu, W Hu, G Qian, H Liao, X Xu, F Berto
Materials & design 180, 107950, 2019
A generalized stress intensity factor to be applied to rounded V-shaped notches
P Lazzarin, S Filippi, F Berto
International Journal of Solids and Structures 43 (9), 2461-2478, 2006
Local strain energy to assess the static failure of U-notches in plates under mixed mode loading
FJ Gómez, M Elices, F Berto, P Lazzarin
International Journal of fracture 145 (1), 29-45, 2007
Some advantages derived from the use of the strain energy density over a control volume in fatigue strength assessments of welded joints
P Lazzarin, F Berto, FJ Gomez, M Zappalorto
International Journal of Fatigue 30 (8), 1345-1357, 2008
Fatigue strength of severely notched specimens made of Ti–6Al–4V under multiaxial loading
F Berto, A Campagnolo, P Lazzarin
Fatigue & Fracture of Engineering Materials & Structures 38 (5), 503-517, 2015
Local strain energy density and fatigue strength of welded joints under uniaxial and multiaxial loading
P Lazzarin, P Livieri, F Berto, M Zappalorto
Engineering fracture mechanics 75 (7), 1875-1889, 2008
Fracture assessment of U-notches under mixed mode loading: two procedures based on the ‘equivalent local mode I’concept
F Berto, P Lazzarin, FJ Gómez, M Elices
International Journal of fracture 148 (4), 415, 2007
Comprehensive structural integrity: Cyclic loading and fatigue
I Milne, et al.
Brittle failures from U‐and V‐notches in mode I and mixed, I+ II, mode: a synthesis based on the strain energy density averaged on finite‐size volumes
P Lazzarin, F Berto, M Elices, J Gómez
Fatigue & Fracture of Engineering Materials & Structures 32 (8), 671-684, 2009
Three-dimensional stress states at crack tip induced by shear and anti-plane loading
A Kotousov, P Lazzarin, F Berto, LP Pook
Engineering Fracture Mechanics 108, 65-74, 2013
Architected Cellular Materials: A Review on their Mechanical Properties towards Fatigue-Tolerant Design and Fabrication
M Benedetti, A Du Plessis, RO Ritchie, M Dallago, J Razavi, F Berto
Material Science Engineering: R, 2021
Application of an average strain energy density criterion to obtain the mixed mode fracture load of granite rock tested with the cracked asymmetric four-point bend specimens
SMJ Razavi, MRM Aliha, F Berto
Theoretical and Applied Fracture Mechanics 97, 419-425, 2018
Brittle failure of inclined key‐hole notches in isostatic graphite under in‐plane mixed mode loading
P Lazzarin, F Berto, MR Ayatollahi
Fatigue & Fracture of Engineering Materials & Structures 36 (9), 942-955, 2013
Fracture of V-notched specimens under mixed mode (I+ II) loading in brittle materials
FJ Gómez, M Elices, F Berto, P Lazzarin
International journal of fracture 159 (2), 121-135, 2009
A notch stress intensity approach to assess the multiaxial fatigue strength of welded tube‐to‐flange joints subjected to combined loadings
P Lazzarin, F Berto
Fatigue & Fracture of Engineering Materials & Structures 27 (2), 127-140, 2005
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