Title of article :
A generalized cohesive element technique for arbitrary crack motion
Author/Authors :
Maiti، نويسنده , , Spandan and Ghosh، نويسنده , , Dipankar and Subhash، نويسنده , , Ghatu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Abstract :
A computational method for arbitrary crack motion through a finite element mesh, termed as the generalized cohesive element technique, is presented. In this method, an element with an internal discontinuity is replaced by two superimposed elements with a combination of original and imaginary nodes. Conventional cohesive zone modeling, limited to crack propagation along the edges of the elements, is extended to incorporate the intra-element mixed-mode crack propagation. Proposed numerical technique has been shown to be quite accurate, robust and mesh insensitive provided the cohesive zone ahead of the crack tip is resolved adequately. A series of numerical examples is presented to demonstrate the validity and applicability of the proposed method.
Keywords :
Mixed-mode failure , Cohesive zone modeling , Generalized cohesive element technique , Intra-element cracking
Journal title :
Finite Elements in Analysis and Design
Journal title :
Finite Elements in Analysis and Design