Forced Tearing of Ductile and Brittle Thin Sheets

T. Tallinen and L. Mahadevan
Phys. Rev. Lett. 107, 245502 – Published 9 December 2011
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Abstract

Tearing a thin sheet by forcing a rigid object through it leads to complex crack morphologies; a single oscillatory crack arises when a tool is driven laterally through a brittle sheet, while two diverging cracks and a series of concertinalike folds forms when a tool is forced laterally through a ductile sheet. On the other hand, forcing an object perpendicularly through the sheet leads to radial petallike tears in both ductile and brittle materials. To understand these different regimes we use a combination of experiments, simulations, and simple theories. In particular, we describe the transition from brittle oscillatory tearing via a single crack to ductile concertina tearing with two tears by deriving laws that describe the crack paths and wavelength of the concertina folds and provide a simple phase diagram for the morphologies in terms of the material properties of the sheet and the relative size of the tool.

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  • Received 17 August 2011

DOI:https://doi.org/10.1103/PhysRevLett.107.245502

© 2011 American Physical Society

Authors & Affiliations

T. Tallinen1 and L. Mahadevan1,2,*

  • 1School of Engineering and Applied Sciences, Harvard University, Cambridge, Massachusetts 02138, USA
  • 2Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA

  • *Corresponding author. lm@seas.harvard.edu

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Issue

Vol. 107, Iss. 24 — 9 December 2011

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