AI-Powered Very-High-Cycle Fatigue Control: Optimizing Microstructural Design for Selective Laser Melted Ti-6Al-4V. [PDF]
Awd M, Walther F.
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Recent Advances in Limiting Fatigue Damage Accumulation Induced by Self-Heating in Polymer-Matrix Composites. [PDF]
Amraei J, Katunin A.
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Dynamic plastic deformation delocalization in FCC solid solution metals. [PDF]
Anjaria D +9 more
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Internal Crack Initiation and Growth Starting from Artificially Generated Defects in Additively Manufactured Ti6Al4V Specimen in the VHCF Regime. [PDF]
Wickmann C +5 more
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Anomalies in Long-Crack Propagation at Low ΔK in Some Engineering Alloys. [PDF]
Kujawski D, Vasudevan AK.
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High-Cycle Fatigue Behaviour of the Aluminium Alloy 5083-H111. [PDF]
Nečemer B +3 more
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Very-High-Cycle Fatigue Behavior of Inconel 718 Alloy Fabricated by Selective Laser Melting at Elevated Temperature. [PDF]
Song Z +6 more
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Usability of Ultrasonic Frequency Testing for Rapid Generation of High and Very High Cycle Fatigue Data. [PDF]
Fitzka M +7 more
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On the applicability of mean stress correction models in the very high cycle fatigue regime (VHCF)
J.A. Alves, M.V. Pereira
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High-Cycle Fatigue Life Prediction of Additive Manufacturing Inconel 718 Alloy via Machine Learning. [PDF]
Song Z +6 more
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