Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.11960/4716
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dc.contributor.authorDimitrov, Diyan M.-
dc.contributor.authorSlavov, Stoyan D.-
dc.contributor.authorMincheva, Desislava Y.-
dc.contributor.authorCavadas, Adélio-
dc.date.accessioned2026-03-11T12:16:00Z-
dc.date.available2026-03-11T12:16:00Z-
dc.date.issued2025-
dc.identifier.citationDimitrov, D. M., Slavov, S. D., Mincheva, D. Y., & Cavadas, A. M. S. (2025). Ultrasonic resonance fatigue testing of 6082 aluminum alloy. Metals, 15(2), Artigo e127. https://doi.org/10.3390/met15020127pt_PT
dc.identifier.issn2075-4701-
dc.identifier.urihttp://hdl.handle.net/20.500.11960/4716-
dc.description.abstractThis study explores the fatigue properties of EN AW-6082-T6 aluminum alloy in the gigacycle range (106–109 cycles), using ultrasonic resonance fatigue testing at 20 kHz in a push–pull mode with a symmetric load cycle (R = −1). A custom-built ultrasonic fatigue machine, developed at TU-Varna, comprising a generator, ultrasonic train (including a high-power transducer, booster, custom-made sonotrode, and specimen), monitoring, data logging systems, and an air-cooling capability, was used for the experiments conducted. A Bezier curve sonotrode, with an amplification ratio of 1:6, was designed and produced for the test. Hourglass-shaped specimens were designed on the base of the dynamic Young’s modulus E = 71.3 GPa, determined through the impulse resonance method (ASTM E1876-01), and validated with FEM analysis for resonance length and stress amplitude. The fatigue testing revealed a fatigue strength reduction of approximately 60 MPa between 106 and 109 cycles. The percentile of failure curves based on a Cactillo–Canteli model fits well with the experimental data and gives a fatigue limit at 109 cycles σl = 104 MPa and “endurance strength” σw = 84 MPa. Surface crack initiation was consistently observed with predominately cleavage transgranular fractures in the fatigue zone. The present research highlights the utility of ultrasonic testing for examining fatigue behavior in the gigacycle regime.pt_PT
dc.language.isoengpt_PT
dc.rightsopenAccesspt_PT
dc.subjectUltrasonic fatiguept_PT
dc.subjectVHCFpt_PT
dc.subjectSonotrodept_PT
dc.subjectAluminum alloypt_PT
dc.subjectFatigue fracturept_PT
dc.subjectS-N curvept_PT
dc.titleUltrasonic resonance fatigue testing of 6082 aluminum alloypt_PT
dc.typearticlept_PT
dc.peerreviewedyespt_PT
degois.publication.firstPageE127pt_PT
degois.publication.volume15pt_PT
degois.publication.issue2pt_PT
degois.publication.titleMetalspt_PT
dc.identifier.doi10.3390/met15020127-
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