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Schmittbuhl, J., Schmitt, F. & Scholz, C. Scaling invariance of crack surfaces.
Stress free conditions on the crack surfaces are enforced.
Porous or dimple features govern the fatigue crack surfaces.
The magneto-electric permeable boundary condition on the crack surfaces is adopted.
These can be caused by internal mechanisms such as crack opening or propagation, crushing, or rubbing of crack surfaces.
Threshold behaviors, induced by initial openings and closures of rough crack surfaces, are depicted by the proposed contact LISA model.
The crack surfaces are affected by time-harmonic axissymmetric tractions parallel to the axis of material symmetry.
A Coulomb friction model is integrated to capture the stick-slip contact motions between the crack surfaces.
Results are presented for two load conditions: remote applied stress and uniform stress segment applied to crack surfaces.
Delamination is assumed to be in shearing mode since the crack surfaces are predominantly sliding and crack opening is vanishing.
The opening and closure of crack surfaces, under forward and reverse slip and stick conditions were monitored.
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