The paper deals with the multi-axial fatigue strength of notched specimens made of 39NiCrMo3 hardened and tempered steel. Circumferentially V-notched specimens were subjected to combined tension and torsion loading, both in-phase and out-of-phase, under two nominal load ratios, R=-1 and R= 0, also taking into account the influence of the biaxiality ratio, λ =τa/ σa. The notch geometry of all axi-symmetric specimens was a notch tip radius of 0.1 mm, a notch depth of 4 mm, an included V-notch angle of 90° and a net section diameter of 12 mm. The results from multi-axial tests are discussed together with those obtained under pure tension and pure torsion loading on plain and notched specimens. Furthermore the fracture surfaces are examined and the size of non-propagating cracks measured from some run-out specimens at 5 million cycles. Finally, all results are presented in terms of the local strain energy density averaged in a given control volume close to the V-notch tip. The control volume is found to be dependent on the loading mode. © 2011 Blackwell Publishing Ltd.

Multiaxial fatigue of V-notched steel specimens: A non-conventional application of the local energy method / Berto, F.; Lazzarin, P.; Yates, J. R.. - In: FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES. - ISSN 8756-758X. - 34:11(2011), pp. 921-943. [10.1111/j.1460-2695.2011.01585.x]

Multiaxial fatigue of V-notched steel specimens: A non-conventional application of the local energy method

Berto F.;
2011

Abstract

The paper deals with the multi-axial fatigue strength of notched specimens made of 39NiCrMo3 hardened and tempered steel. Circumferentially V-notched specimens were subjected to combined tension and torsion loading, both in-phase and out-of-phase, under two nominal load ratios, R=-1 and R= 0, also taking into account the influence of the biaxiality ratio, λ =τa/ σa. The notch geometry of all axi-symmetric specimens was a notch tip radius of 0.1 mm, a notch depth of 4 mm, an included V-notch angle of 90° and a net section diameter of 12 mm. The results from multi-axial tests are discussed together with those obtained under pure tension and pure torsion loading on plain and notched specimens. Furthermore the fracture surfaces are examined and the size of non-propagating cracks measured from some run-out specimens at 5 million cycles. Finally, all results are presented in terms of the local strain energy density averaged in a given control volume close to the V-notch tip. The control volume is found to be dependent on the loading mode. © 2011 Blackwell Publishing Ltd.
2011
Axisymmetric; Biaxiality ratio; Control volumes; Fracture surfaces; In-phase; Loading modes; Local energy; Local strains; Multi-axial fatigue; Net section; Nominal loads; Non-propagating crack; Notch depth; Notch geometry; Notch stress intensity factors; Notched specimens; Out of phase; Steel specimens; Strain energy density; Tip radius; V-notched; V-notches, Fatigue of materials; Loading; Steel research; Strain energy; Stress analysis; Superalloys; Tensile strength; Welds, Torsional stress; multiaxial fatigue; notch stress intensity factor (NSIF); strain energy density (SED); torsion loading; V-notched
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Multiaxial fatigue of V-notched steel specimens: A non-conventional application of the local energy method / Berto, F.; Lazzarin, P.; Yates, J. R.. - In: FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES. - ISSN 8756-758X. - 34:11(2011), pp. 921-943. [10.1111/j.1460-2695.2011.01585.x]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1688088
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