Title of article
SGBEM analysis of crack–particle(s) interactions due to elastic constants mismatch
Author/Authors
Williams، نويسنده , , R.C. and Phan، نويسنده , , A.-V. and Tippur، نويسنده , , H.V. and Kaplan، نويسنده , , T. and Gray، نويسنده , , L.J.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
18
From page
314
To page
331
Abstract
The effects of elastic constants mismatch on the interaction between a propagating crack and single or multiple inclusions in brittle matrix materials are investigated using numerical simulations. The simulations employ a quasi-static crack-growth prediction tool based upon the symmetric-Galerkin boundary element method (SGBEM) for multiregions, a modified quarter-point crack-tip element, the displacement correlation technique for evaluating stress intensity factors (SIFs), and the maximum principal stress criterion for crack-growth direction. It is shown that, even with this simple method for calculating SIF, the crack-growth prediction tool is both highly accurate and computationally effective. This is evidenced by results for the case of a single inclusion in an infinite plate, where the SGBEM results for the SIFs show excellent agreement with known analytical solutions. The simulation results for crack growth and stress intensity behaviors in particulate media are very stable. The crack-tip shielding and amplification behaviors, as seen in similar studies using other numerical approaches, can be clearly observed.
Keywords
Quasi-static crack growth , Crack–inclusion(s) interaction , Symmetric-Galerkin boundary element method
Journal title
ENGINEERING FRACTURE MECHANICS
Serial Year
2007
Journal title
ENGINEERING FRACTURE MECHANICS
Record number
2341603
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