F
Filippo Berto
Researcher at Norwegian University of Science and Technology
Publications - 1002
Citations - 22081
Filippo Berto is an academic researcher from Norwegian University of Science and Technology. The author has contributed to research in topics: Strain energy density function & Fracture (geology). The author has an hindex of 63, co-authored 831 publications receiving 14979 citations. Previous affiliations of Filippo Berto include University of Alabama & Harbin Institute of Technology.
Papers
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Metal additive manufacturing in aerospace: A review
Byron Alexander Blakey-Milner,Byron Alexander Blakey-Milner,Paul R. Gradl,Glen Snedden,Michael J. Brooks,Jean Pitot,Elena López,Martin Leary,Filippo Berto,Anton du Plessis,Anton du Plessis +10 more
TL;DR: A comprehensive review of metal additive manufacturing in the aerospace industry can be found in this paper, where the primary application scenarios and the associated commercial and technical benefits of additive manufacturing for these applications are summarized.
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Recent developments in brittle and quasi-brittle failure assessment of engineering materials by means of local approaches
Filippo Berto,Paolo Lazzarin +1 more
TL;DR: In this article, the authors present a review of some local approaches applicable near stress raisers both sharp and blunt V-notches, which has been recently applied to assess the brittle failure of a large number of materials.
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A review of the volume-based strain energy density approach applied to V-notches and welded structures
Filippo Berto,Paolo Lazzarin +1 more
TL;DR: In this paper, a large bulk of experimental data from static tests of sharp and blunt V-notches and from fatigue tests of welded joints are presented in an unified way by using the mean value of the Strain Energy Density (SED) over a given finite-size volume surrounding the highly stressed regions.
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Mechanical design and multifunctional applications of chiral mechanical metamaterials: A review
TL;DR: In this paper, a review of 2D and 3D chiral mechanical metamaterials is presented, and their mechanical behaviors and deformation mechanisms can be investigated through equilibrium principle, strain energy analysis, micropolar elasticity and homogenization theories.
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Some Expressions for the Strain Energy in a Finite Volume Surrounding the Root of Blunt V-notches
Paolo Lazzarin,Filippo Berto +1 more
TL;DR: In this article, the authors derived closed form expressions for the strain energy averaged in a finite size volume surrounding the root of blunt V-shaped notches under Mode I loading, which matches Williams and Creager-Paris' solutions in the particular cases of sharp V-notches or blunt cracks.