TY - GEN
T1 - Oscillating fracture paths in thin brittle sheets
T2 - 11th International Conference on Fracture 2005, ICF11
AU - Audoly, B.
AU - Reis, P. M.
AU - Roman, B.
PY - 2005/12/1
Y1 - 2005/12/1
N2 - We report a new kind of quasi-static oscillatory crack propagation when a cutting tool, of moderately large width, is driven through a thin brittle polymer film (Roman [1], Ghatak [2]). In our experiments, a cutting tool is perpendicularly driven through a brittle thin sheet, clamped at its boundaries, and progressively cuts the material as it advances. For large enough tools, the crack tip follows a highly periodic path, leaving behind a striking oscillatory pattern. The amplitude and wavelength of the oscillatory crack paths scale linearly with the width of the cutting tip, over a wide range of length scales, but are independent of both the width of the sheet and the cutting speed. We propose a geometrical model (Audoly [3]) that accurately reproduces the behaviour observed experimentally, far away from threshold. The central idea of our formulation is a coupling between the Griffith criterion for crack propagation and out-plane-deformations of the film. We show that, for our case, the propagation of cracks in brittle sheets follows a simple geometrical construction.
AB - We report a new kind of quasi-static oscillatory crack propagation when a cutting tool, of moderately large width, is driven through a thin brittle polymer film (Roman [1], Ghatak [2]). In our experiments, a cutting tool is perpendicularly driven through a brittle thin sheet, clamped at its boundaries, and progressively cuts the material as it advances. For large enough tools, the crack tip follows a highly periodic path, leaving behind a striking oscillatory pattern. The amplitude and wavelength of the oscillatory crack paths scale linearly with the width of the cutting tip, over a wide range of length scales, but are independent of both the width of the sheet and the cutting speed. We propose a geometrical model (Audoly [3]) that accurately reproduces the behaviour observed experimentally, far away from threshold. The central idea of our formulation is a coupling between the Griffith criterion for crack propagation and out-plane-deformations of the film. We show that, for our case, the propagation of cracks in brittle sheets follows a simple geometrical construction.
M3 - Conference contribution
AN - SCOPUS:84869743131
SN - 9781617820632
T3 - 11th International Conference on Fracture 2005, ICF11
SP - 5362
EP - 5366
BT - 11th International Conference on Fracture 2005, ICF11
Y2 - 20 March 2005 through 25 March 2005
ER -