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Search Items: Threshold stress intensity, . hits: 9


** = Publications listed in SCI/SSCI - Journals (published in Web of Science)
* = peer-reviewed publication (not listed in SCI/SSCI)
Only: Full paper/article, Review, Proceedings Paper

2023

** Fitzka, M; Moalla, M; Mayer, H Very high cycle fatigue of high carbon chromium bearing steel at high compressive mean stresses.

INT J FATIGUE. 2023; 169, 107492 WoS FullText FullText_BOKU

2022

** Mayer, H; Holper, B; Zettl, B; Stanzl-Tschegg, SE Slow fatigue crack growth in 2024-T3 and Ti-6Al-4V at low and ultrasonic frequency.

INT J MATER RES. 2022; 94(5): 539-546. WoS FullText FullText_BOKU

2018

** Karr, U; Schonbauer, BM; Mayer, H Near-threshold fatigue crack growth properties of wrought magnesium alloy AZ61 in ambient air, dry air, and vacuum.

FATIGUE FRACT ENG M. 2018; 41(9): 1938-1947. WoS FullText FullText_BOKU

2013

** Schönbauer, BM; Stanzl-Tschegg, SE; Influence of environment on the fatigue crack growth behaviour of 12% Cr steel..

Ultrasonics. 2013; 53(8):1399-1405 WoS PubMed FullText FullText_BOKU

2007

** Mayer, H., Stojanovic, S., Ede, C., Zettl, B., Beitrag niedriger Lastamplituden zur Ermüdungsschädigung von 0,15%C Stahl.

MATERIALWISS WERKST, 38, 581-590; ISSN 0933-5137 WoS FullText FullText_BOKU

2005

** Mayer, H., Ede, C., Allison, J.E. Influence of Cyclic Loads below Endurance Limit and Threshold Stress Intensity on Fatigue Damage in Cast Aluminium Alloy 319-T7.

Int. J. Fatigue, 27, 2, 129-141 WoS FullText FullText_BOKU

** Mayer, H., Papakyriacou, M., Zettl, B., Vacic, S., Endurance limit and threshold stress intensity of die cast magnesium and aluminium alloys at elevated temperatures.

Int. J. Fatigue, 27, 9, 1076-1088 WoS FullText FullText_BOKU

2003

** Mayer, H., Holper, B., Zettl, B., Stanzl-Tschegg, S.E. Slow Fatigue Crack Growth in 2024-T3 and Ti-6Al-4V at Low and Ultrasonic Frequency.

Z. Metallkde., 94, 5, 539-546 WoS

2002

** Papakyriacou, M., Mayer, H., Fuchs, U., Tschegg, S., Wei, R.P. Influence of atmospheric moisture on slow fatigue crack growth at ultrasonic frequency in aluminium and magnesium alloys..

Fatigue Fract. Engng. Mater. Struct., 25, 8/9, 795-804 WoS

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