A phenomenological model of fatigue macrocrack initiation near stress concentrators
Author:
Affiliation:
1. Karpenko Physico‐Mechanical Institute, National Academy of Sciences of Ukraine, 5, Naukova Str., 290601, Lviv, Ukraine
Publisher
Wiley
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1046/j.1460-2695.1999.00098.x
Reference34 articles.
1. OMRomaniv SYa Yarema GMNykyforchyn NAMakchutov MMStadnyk1990Fatigue and crack resistance of structural materials. In:Fracture Mechanics and Materials Strength(Edited by V. V. Panasyuk) Vol. 4 Naukova Dumka Kiev (in Russian).
2. KJMiller1993Materials science perspective of metal fatigue resistance. In:Materials Science and Technology 9 June pp. 453–462.
3. Effect of low temperature on the initiation and growth of fatigue crack in 08kp steel with different grain size;Ostash OP;Soviet Mater. Sci.,1988
4. Propagation of short fatigue crack;Suresh S;Int. Metals Rev.,1984
5. Cyclic crack resistance of aluminium alloys in the crack origin and growth stages;Panasyuk VV;Soviet Mater. Sci.,1987
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