Stability Limit for Mode-I Fracture
Abstract
In order to study the stability of mode-I fracture, we consider a crack moving along the centerline of a very wide strip and compute its steady-state response to a small, spatially periodic shear stress. We find that, in the presence of this perturbation, the crack remains very nearly straight up to a critical speed of about , where is the Rayleigh speed. Deviations from straight-line propagation are suppressed by a factor proportional to , where is the width of the strip. At , however, this suppression disappears and the steady-state crack follows the wavy curve along which the shear stress vanishes in the unbroken strip. We interpret this behavior as a loss of stability and discuss its implications for a more complete dynamical theory of fracture propagation.
Cite
@article{arxiv.chao-dyn/9406009,
title = {Stability Limit for Mode-I Fracture},
author = {Emily S. C. Ching and J. S. Langer},
journal= {arXiv preprint arXiv:chao-dyn/9406009},
year = {2008}
}
Comments
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