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Adequate description of fatigue crack path stability.
Fleck, N.A., Hutchinson, J.W., Suo, Z., " Crack Path Selection in a Brittle Adhesive Layer". Int.
Overall crack path and fracture surface marks are addressed in combination with crack steady-state velocity.
Four simulations with emphasis on crack path prediction are presented.
This term is degenerated, in order to be non null only at the fictitious crack path.
Subsequently, the crack path was analyzed using a scanning electron microscope.
One among of the local symmetries that prevails, appears as crack path on the macrolevel.
The complete solution of a crack propagation problem includes determination of the crack path.
Crack propagation exhibits significant changes in the crack path because of the heterogeneous stress distribution.
Microstructural features, i.e. the interdendritic phase, strongly dictate the subsurface crack path and crack branching.
Indeed, the stress field below the contact line may promote lateral shearing, which impacts the crack path.
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