Seuraa
Bernd M. Schönbauer
Bernd M. Schönbauer
Senior Scientist, BOKU, Vienna
Vahvistettu sähköpostiosoite verkkotunnuksessa boku.ac.at - Kotisivu
Nimike
Viittaukset
Viittaukset
Vuosi
Life time and cyclic slip of copper in the VHCF regime
S Stanzl-Tschegg, H Mughrabi, B Schoenbauer
International journal of fatigue 29 (9-11), 2050-2059, 2007
1302007
Near-threshold fatigue crack propagation and internal cracks in steel
S Stanzl-Tschegg, B Schönbauer
Procedia Engineering 2 (1), 1547-1555, 2010
1182010
Fatigue life estimation of pitted 12% Cr steam turbine blade steel in different environments and at different stress ratios
BM Schönbauer, SE Stanzl-Tschegg, A Perlega, RN Salzman, NF Rieger, ...
International Journal of Fatigue 65, 33-43, 2014
1152014
Fatigue damage in copper polycrystals subjected to ultrahigh-cycle fatigue below the PSB threshold
A Weidner, D Amberger, F Pyczak, B Schönbauer, S Stanzl-Tschegg, ...
International journal of fatigue 32 (6), 872-878, 2010
992010
Mechanisms of strain localization, crack initiation and fracture of polycrystalline copper in the VHCF regime
SE Stanzl-Tschegg, B Schönbauer
International journal of fatigue 32 (6), 886-893, 2010
942010
Effect of small defects on the fatigue strength of martensitic stainless steels
BM Schönbauer, H Mayer
International Journal of Fatigue 127, 362-375, 2019
812019
The influence of various types of small defects on the fatigue limit of precipitation-hardened 17-4PH stainless steel
BM Schönbauer, K Yanase, M Endo
Theoretical and applied fracture mechanics 87, 35-49, 2017
752017
The influence of corrosion pits on the fatigue life of 17-4PH steam turbine blade steel
BM Schönbauer, SE Stanzl-Tschegg, A Perlega, RN Salzman, NF Rieger, ...
Engineering Fracture Mechanics 147, 158-175, 2015
732015
A fracture mechanics approach to interior fatigue crack growth in the very high cycle regime
T Ogawa, SE Stanzl-Tschegg, BM Schönbauer
Engineering Fracture Mechanics 115, 241-254, 2014
702014
Pit-to-crack transition under cyclic loading in 12% Cr steam turbine blade steel
BM Schönbauer, A Perlega, UP Karr, D Gandy, SE Stanzl-Tschegg
International Journal of Fatigue 76, 19-32, 2015
592015
VHCF properties and fatigue limit prediction of precipitation hardened 17-4PH stainless steel
BM Schönbauer, K Yanase, M Endo
International Journal of Fatigue 88, 205-216, 2016
502016
Inclusion initiated fracture in spring steel under axial and torsion very high cycle fatigue loading at different load ratios
U Karr, Y Sandaiji, R Tanegashima, S Murakami, B Schönbauer, M Fitzka, ...
International journal of fatigue 134, 105525, 2020
472020
Influence of inclusion type on the very high cycle fatigue properties of 18Ni maraging steel
U Karr, R Schuller, M Fitzka, B Schönbauer, D Tran, B Pennings, H Mayer
Journal of Materials Science 52, 5954-5967, 2017
452017
Inclusion initiated fracture under cyclic torsion very high cycle fatigue at different load ratios
U Karr, B Schönbauer, M Fitzka, E Tamura, Y Sandaiji, S Murakami, ...
International Journal of Fatigue 122, 199-207, 2019
382019
Influences of small defects on torsional fatigue limit of 17-4PH stainless steel
BM Schönbauer, K Yanase, M Endo
International Journal of Fatigue 100, 540-548, 2017
372017
Usability of ultrasonic frequency testing for rapid generation of high and very high cycle fatigue data
M Fitzka, BM Schönbauer, RK Rhein, N Sanaei, S Zekriardehani, ...
Materials 14 (9), 2245, 2021
352021
Influence of environment on the fatigue crack growth behaviour of 12% Cr steel
BM Schönbauer, SE Stanzl-Tschegg
Ultrasonics 53 (8), 1399-1405, 2013
352013
Near‐threshold fatigue crack growth properties of wrought magnesium alloy AZ61 in ambient air, dry air, and vacuum
U Karr, BM Schönbauer, H Mayer
Fatigue & Fracture of Engineering Materials & Structures 41 (9), 1938-1947, 2018
342018
3D nanoscale analysis of bone healing around degrading Mg implants evaluated by X-ray scattering tensor tomography
M Liebi, V Lutz-Bueno, M Guizar-Sicairos, BM Schönbauer, J Eichler, ...
Acta Biomaterialia 134, 804-817, 2021
302021
Influence of small defects and nonmetallic inclusions on the high and very high cycle fatigue strength of an ultrahigh‐strength steel
BM Schönbauer, S Ghosh, J Kömi, T Frondelius, H Mayer
Fatigue & Fracture of Engineering Materials & Structures 44 (11), 2990-3007, 2021
272021
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