Fatigue crack growth in an aluminum alloy: Avalanches and coarse graining to growth laws

In fatigue fracture the crack growth is slow and in many materials exhibits apparent self-similarity as expressed by the dependence of the growth velocity on a stress intensity factor that grows with the crack size. We study the intermittency of fatigue crack dynamics in aluminium alloys by optical...

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Veröffentlicht in:Physical review research 2021-11, Vol.3 (4), p.L042029, Article L042029
Hauptverfasser: Lomakin, Ivan V., Mäkinen, Tero, Widell, Kim, Savolainen, Juha, Coffeng, Sebastian, Koivisto, Juha, Alava, Mikko J.
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Sprache:eng
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Zusammenfassung:In fatigue fracture the crack growth is slow and in many materials exhibits apparent self-similarity as expressed by the dependence of the growth velocity on a stress intensity factor that grows with the crack size. We study the intermittency of fatigue crack dynamics in aluminium alloys by optical tracking. A power-law distribution of crack tip jumps is found with an exponent close to two and a cutoff which increases with time or crack propagation. The cutoff is related to the crack velocity. We show how such a distribution evolves or coarse grains with the scale of observation or time window. The correlations of the crack propagation imply short-range memory effects in the underlying dynamics. Our results show universal features of fatigue cracks and how these lead to the crack growth and failure in material samples.
ISSN:2643-1564
2643-1564
DOI:10.1103/PhysRevResearch.3.L042029