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Paolo Lazzarin
Paolo Lazzarin
Zweryfikowany adres z gest.unipd.it
Tytuł
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Cytowane przez
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A finite-volume-energy based approach to predict the static and fatigue behavior of components with sharp V-shaped notches
P Lazzarin, R Zambardi
International journal of fracture 112, 275-298, 2001
9402001
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, 1-48, 2014
5892014
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
5112009
A notch intensity factor approach to the stress analysis of welds
P Lazzarin, R Tovo
Fatigue & fracture of engineering materials & structures 21 (9), 1089-1103, 1998
4561998
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, 161-185, 2005
4152005
A unified approach to the evaluation of linear elastic stress fields in the neighborhood of cracks and notches
P Lazzarin, R Tovo
International Journal of Fracture 78, 3-19, 1996
4071996
Fatigue strength of steel and aluminium welded joints based on generalised stress intensity factors and local strain energy values
P Livieri, P Lazzarin
International Journal of Fracture 133, 247-276, 2005
3972005
Developments of some explicit formulas useful to describe elastic stress fields ahead of notches in plates
S Filippi, P Lazzarin, R Tovo
International Journal of Solids and Structures 39 (17), 4543-4565, 2002
3812002
A bi‐parametric Wöhler curve for high cycle multiaxial fatigue assessment
L Susmel, P Lazzarin
Fatigue & Fracture of Engineering Materials & Structures 25 (1), 63-78, 2002
3532002
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
3442010
A generalized stress intensity factor to be applied to rounded V-shaped notches
P Lazzarin, S Filippi
International journal of solids and structures 43 (9), 2461-2478, 2006
2532006
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, 29-45, 2007
2362007
Notch stress intensity factors and fatigue strength of aluminium and steel welded joints
P Lazzarin, P Livieri
International Journal of Fatigue 23 (3), 225-232, 2001
2362001
Fracture mechanics and notch sensitivity
B Atzori, P Lazzarin, G Meneghetti
Fatigue & Fracture of Engineering Materials & Structures 26 (3), 257-267, 2003
2262003
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
2212008
Fatigue crack initiation and propagation phases near notches in metals with low notch sensitivity
P Lazzarin, R Tovo, G Meneghetti
International Journal of fatigue 19 (8-9), 647-657, 1997
2151997
A notch stress intensity approach applied to fatigue life predictions of welded joints with different local toe geometry
P Lazzarin, T Lassen, P Livieri
Fatigue & Fracture of Engineering Materials & Structures 26 (1), 49-58, 2003
2112003
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
2062008
The mean stress effect on the high-cycle fatigue strength from a multiaxial fatigue point of view
L Susmel, R Tovo, P Lazzarin
International Journal of Fatigue 27 (8), 928-943, 2005
2042005
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
2002015
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