Title of article :
Coupled plasticity and damage modeling and their applications in a three-dimensional Eulerian hydrocode
Author/Authors :
M.W. Burkett، نويسنده , , S.P. Clancy، نويسنده , , P.J. Maudlin، نويسنده , , K.S. Holian، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
7
From page :
126
To page :
132
Abstract :
Previously developed constitutive models and solution algorithms for continuum-level anisotropic elastoplastic material strength and an isotropic damage model TEPLA have been implemented in the three-dimensional Eulerian hydrodynamics code known as CONEJO. The anisotropic constitutive modeling is posed in an unrotated material frame of reference using the theorem of polar decomposition to compute rigid-body rotation. TEPLA is based upon the Gurson flow surface (a potential function used in conjunction with the associated flow law). The original TEPLA equation set has been extended to include anisotropic elastoplasticity and has been recast into a new implicit solution algorithm based upon an eigenvalue scheme to accommodate the anisotropy. This algorithm solves a two-by-two system of nonlinear equations using a Newton–Raphson iteration scheme. Simulations of a shaped-charge jet formation, a Taylor cylinder impact, and an explosively loaded hemishell were selected to demonstrate the utility of this modeling capability. The predicted deformation topology, plastic strain, and porosity distributions are shown for the three simulations.
Keywords :
Anisotropic , Damage , hydrocode , constitutive modeling , Eulerian
Journal title :
International Journal of Impact Engineering
Serial Year :
2006
Journal title :
International Journal of Impact Engineering
Record number :
1250948
Link To Document :
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