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  4. Intertwined Multiple Spiral Fracture in Perforated Sheets
Details

Intertwined Multiple Spiral Fracture in Perforated Sheets

Journal
Physical Review Letters
ISSN
1079-7114
Date Issued
2016
Author(s)
Hamm-Hahn, L  
Fuentealba-Duran, J  
DOI
https://doi.org/10.1103/PhysRevLett.116.165501
Abstract
We study multiple tearing of a thin, elastic, brittle sheet indented with a rigid cone. The n cracks initially prepared symmetrically propagate radially for n≥4. However, if n<4 the radial symmetry is broken and fractures spontaneously intertwine along logarithmic spiral paths, respecting order n rotational symmetry. In the limit of very thin sheets, we find that fracture mechanics is reduced to a geometrical model that correctly predicts the maximum number of spirals to be strictly 4, together with their growth rate and the perforation force. Similar spirals are also observed in a different tearing experiment (this time up to n=4, in agreement with the model), in which bending energy of the sheet is dominant. © 2016 American Physical Society.
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