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Crack initiation in VHCF regime on forged titanium alloy under tensile and torsion loading modes

Article dans une revue avec comité de lecture
Auteur
NIKITIN, Alexander
217892 Russian Academy of Sciences [Moscow] [RAS]
ccPALIN-LUC, Thierry
SHANYAVSKIY, Andrey
217892 Russian Academy of Sciences [Moscow] [RAS]
467316 National research university [MAI]

URI
http://hdl.handle.net/10985/11224
DOI
10.1016/j.ijfatigue.2016.05.030
Date
2016
Journal
International Journal of Fatigue

Résumé

This paper is focused on the VHCF behavior of aeronautical titanium alloy under tensile and torsion fatigue loadings. Tensile tests were carried out with two different stress ratios: R = À1 and R = 0.1. Both surface and subsurface crack initiations were observed. In the case of subsurface crack initiation several fatigue life controlling mechanisms of crack initiation were found under fully-reversed loading conditions: initiation from (1) strong defects; (2) ‘macro-zone’ borders; (3) quasi-smooth facets and (4) smooth facets. Tests with stress ratio R = 0.1, have shown that initiation from the borders of ‘macro-zones’ becomes the dominant crack initiation mechanism in presence of positive mean stress. Like for the tensile results, surface and subsurface crack initiations were observed under ultrasonic torsion in spite of the maximum shear stress location on the specimen surface. But the real reason for the subsurface crack initiation under torsion was not found.

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Documents liés

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  • Comparison of crack paths in a forged and extruded aeronautical titanium alloy loaded in torsion in the gigacycle fatigue regime 
    Article dans une revue avec comité de lecture
    NIKITIN, Alexander; ccPALIN-LUC, Thierry; SHANYAVSKIY, Andrey; BATHIAS, Claude (Elsevier, 2016)
    This paper discusses features of fatigue crack initiation and growth in an extruded and forged VT3-1 titanium alloy loaded in pure torsion in the gigacycle regime. Torsion fatigue tests were performed at 20 kHz up to a ...
  • Fatigue crack initiation and growth on an extruded titanium alloy in gigacycle regime: comparison between tension and torsion loadings 
    Communication sans acte
    NIKITIN, Alexander; ccPALIN-LUC, Thierry; SHANYAVSKIY, Andrey (Elsevier, 2016)
    This paper is focused on the analysis of fatigue crack initiation and growth mechanisms in defect free VT3-1 titanium alloy (similar to Ti6Al4V) in VHCF regime under tensile and torsion loadings. Fully reversed fatigue ...
  • Crack path in aeronautical titanium alloy under ultrasonic torsion loading 
    Article dans une revue avec comité de lecture
    NIKITIN, Alexander; BATHIAS, Claude; ccPALIN-LUC, Thierry; SHANYAVSKIY, Andrey (Università di Cassino, 2015)
    This paper discusses features of fatigue crack initiation and growth in aeronautical VT3-1 titanium alloy under pure torsion loading in gigacycle regime. Two materials: extruded and forged VT3-1 titanium alloys were studied. ...
  • Fatigue behaviour of two-phase titanium alloy in VHCF regime 
    Conférence invitée
    NIKITIN, Alexander; SHANYAVSKIY, Andrey; ccPALIN-LUC, Thierry (DVM, 2017)
    This paper is focused on fatigue crack initiation and early growth in two-phase titanium alloy VT3-1 (similar to Ti-6Al-4V) under VHCF loads. The material was produced by two different processes: forging and extrusion. ...
  • Crack initiation induced nanograins and facets of a titanium alloy with lamellar and equiaxed microstructure in very-high-cycle fatigue 
    Article dans une revue avec comité de lecture
    PAN, Xiangnan; XU, Shouwen; NIKITIN, Alexander; ccSHANYAVSKIY, Andrey; ccPALIN-LUC, Thierry; HONG, Youshi (Elsevier, 2023)
    Fractographic and microstructure features in crack initiation region in very-high-cycle fatigue (VHCF) were characterized for an extruded titanium alloy VT3-1 under stress ratios R =–1 and 0.1. The material consists of ...

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