The averaged value of the strain energy density over a well-defined volume is used to predict the static strength of U-notched specimens under mixed-mode conditions due to combined bending and shear loads. The volume is centered in relation to the maximum principal stress present on the notch edge, by rigidly rotating the crescent-shaped volume already used in the literature to analyse U- and V-shaped notches subject to mode I loading. The volume size depends on the ultimate tensile strength σu and the fracture toughness KIC of the material. In parallel, an experimental programme was performed. All specimens are made of polymethyl-metacrylate (PMMA), a material which exhibits quasi-brittle behaviour at -60°C. Good agreement is found between experimental data for the critical loads to failure and theoretical predictions based on the constancy of the mean strain energy density over the control volume. © Springer Science+Business Media B.V. 2007.

Local strain energy to assess the static failure of U-notches in plates under mixed mode loading / Gómez, F. J.; Elices, M.; Berto, F.; Lazzarin, P.. - In: INTERNATIONAL JOURNAL OF FRACTURE. - ISSN 0376-9429. - 145:1(2007), pp. 29-45. [10.1007/s10704-007-9104-3]

Local strain energy to assess the static failure of U-notches in plates under mixed mode loading

Berto F.;
2007

Abstract

The averaged value of the strain energy density over a well-defined volume is used to predict the static strength of U-notched specimens under mixed-mode conditions due to combined bending and shear loads. The volume is centered in relation to the maximum principal stress present on the notch edge, by rigidly rotating the crescent-shaped volume already used in the literature to analyse U- and V-shaped notches subject to mode I loading. The volume size depends on the ultimate tensile strength σu and the fracture toughness KIC of the material. In parallel, an experimental programme was performed. All specimens are made of polymethyl-metacrylate (PMMA), a material which exhibits quasi-brittle behaviour at -60°C. Good agreement is found between experimental data for the critical loads to failure and theoretical predictions based on the constancy of the mean strain energy density over the control volume. © Springer Science+Business Media B.V. 2007.
2007
Bending strength; Brittleness; Failure analysis; Fracture toughness; Plates (structural components); Polymethyl methacrylates; Shear stress; Stress concentration; Stress intensity factors; Structural loads; Tensile strength, Mixed mode loading; Strain energy density, Strain energy; Elasticity; Mixed mode fracture; Notch stress intensity factor; Strain energy density (SED); U-notch
01 Pubblicazione su rivista::01a Articolo in rivista
Local strain energy to assess the static failure of U-notches in plates under mixed mode loading / Gómez, F. J.; Elices, M.; Berto, F.; Lazzarin, P.. - In: INTERNATIONAL JOURNAL OF FRACTURE. - ISSN 0376-9429. - 145:1(2007), pp. 29-45. [10.1007/s10704-007-9104-3]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1688119
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