arXiv · cond-mat/0603621
Random and Correlated Roughening in Slow Fracture by Damage Nucleation
Abstract
We address the role of the nature of material disorder in determining the roughness of cracks which grow by damage nucleation and coalescence ahead of the crack tip. We highlight the role of quenched and annealed disorders in relation to the length scales $d$ and $ξ_c$ associated with the disorder and the damage nucleation respectively. In two related models, one with quenched disorder in which $d \simeq ξ_c $, the other with annealed disorder in which $d \ll ξ_c$, we find qualitatively different roughening properties for the resulting cracks in 2-dimensions. The first model results in random cracks with an asymptotic roughening exponent $ζ\approx 0.5$. The second model shows correlated roughening with $ζ\approx 0.66$. The reasons for the qualitative difference are rationalized and explained.
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Ido Ben-Dayan, Eran Bouchbinder, Itamar Procaccia. 2006-03-23. Random and Correlated Roughening in Slow Fracture by Damage Nucleation. https://doi.org/10.1103/physreve.74.046102
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