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RESEARCH PRODUCT

Roughening of a propagating planar crack front

Jan ÅStrömMikko J. AlavaJ. Timonen

subject

PhysicsConstant ratePlanarCondensed matter physicsPhysicsmedicineStiffnesspropagatingSurface finishmedicine.symptomrougheningplanar crack front

description

A numerical model of the front of a planar crack propagating between two connected elastic plates is investigated. The plates are modeled as square lattices of elastic beams. The plates are connected by similar but breakable beams with a randomly varying stiffness. The crack is driven by pulling both plates at one end in Mode I at a constant rate. We find $\ensuremath{\zeta}=1/3, z=4/3,$ and $\ensuremath{\beta}=1/4$ for the roughness, dynamical, and growth exponents, respectively, that describe the front behavior. This is similar to continuum limit analyses based on a perturbative stress-intensity treatment of the front [H. Gao and J. R. Rice, J. Appl. Mech. 56, 828 (1989)]. We discuss the differences to recent experiments.

10.1103/physreve.62.2878https://aaltodoc.aalto.fi/handle/123456789/18934