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Continuing crack-tip deformation and fracture for plane-strain crack growth in elastic-plastic solids
Authors:J.R. Rice  E.P. Sorensen
Affiliation:Division of Engineering, Brown University, Providence, RI 02912, U.S.A.
Abstract:Analysis of the deformation field consistent with a Prandtl stress distribution travelling with an advancing plane-strain crack reveals the functional form of the near tip crack profile in an elastic-plastic solid. The crack opening δ is shown to have the form δ ~ r In (const./r) at a distance r from the tip. This observation coupled with data generated from finite element investigations of growing cracks in small-scale yielding permits the construction of a relation characterizing the deformation at an extending crack tip. A ductile crack-growth criterion consisting of the attainment of a critical opening at a small characteristic material distance from the tip is adopted. Predictions of the stability of a growing crack for both small-scale yielding specimens and those subject to general yielding are discussed.
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