4.7 Article

A nonlinear symmetry breaking effect in shear cracks

Journal

JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS
Volume 60, Issue 10, Pages 1703-1709

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmps.2012.06.010

Keywords

Dynamic fracture; Friction; Nonlinear crack mechanics; Asymptotic analysis

Funding

  1. James S. McDonnell Foundation
  2. Minerva Foundation
  3. Federal German Ministry for Education and Research
  4. Harold Perlman Family Foundation
  5. William Z. and Eda Bess Novick Young Scientist Fund

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Shear cracks propagation is a basic dynamical process that mediates interfacial failure. We develop a general weakly nonlinear elastic theory of shear cracks and show that these experience tensile-mode crack tip deformation, including possibly opening displacements, in agreement with Stephenson's prediction. We quantify this nonlinear symmetry breaking effect, under two-dimensional deformation conditions, by an explicit inequality in terms of the first and second order elastic constants in the quasi-static regime and by semi-analytic calculations in the fully dynamic regime. Our general results are applied to various materials. Finally, we discuss related works in the literature and note the potential relevance of elastic nonlinearities for various problem, including frictional sliding. (C) 2012 Elsevier Ltd. All rights reserved.

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