Title of article :
A computational model for the finite element analysis of thermoplasticity coupled with ductile damage at finite strains
Author/Authors :
Akkaram Srikanth، نويسنده , , Nicholas Zabaras، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Pages :
37
From page :
1569
To page :
1605
Abstract :
An updated Lagrangian implicit FEM model for the analysis of large thermo-mechanically coupled hyperelastic- viscoplastic deformations of isotropic porous materials is considered. An appropriate framework for consti- tutive modelling is introduced that includes a stress-free thermally expanded con guration and a plastically deformed unstressed damaged con guration. A two-level iterative scheme is employed at each time increment to solve the eld equations governing the conservation of momentum (mechanical step) and the conservation of energy (thermal step) for the coupled thermo-mechanical problem. Exact linearizations for the calculation of the tangent sti ness are performed in each of these solution steps. A fully implicit, thermo-mechanically coupled and incrementally objective Euler-backward radial return based map is developed for the time inte- gration of the constitutive equations. The present model is used to analyse a number of benchmark examples including metal forming processes wherein temperature and the accumulated damage play an important role in in uencing the deformation mechanism and the nature of the deformed workpiece. Copyright
Keywords :
nite deformations , damage , thermoplasticity , forming
Journal title :
International Journal for Numerical Methods in Engineering
Serial Year :
1999
Journal title :
International Journal for Numerical Methods in Engineering
Record number :
423827
Link To Document :
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