Title of article :
Prediction of central bursting during axisymmetric cold extrusion of a metal alloy containing particles
Author/Authors :
Cahal McVeigh، نويسنده , , Wing Kam Liu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
A simple cell model based damage dependent yield surface is used to model the effect of void nucleation and growth
in an aluminum alloy during an axisymmetric cold extrusion process. Material parameters for characterization of the
yield surface are determined through a physically consistent micromechanical cell modeling technique. The model can
account for the behavior of a void containing a particle under severe compressive processing conditions. The formation
of distinct, equally spaced, arrowhead shaped central burst defects is observed during simulation of the extrusion process.
Application of the model to a two-stage rolling process is also briefly illustrated. Formation of central bursts during
extrusion and edge cracking during rolling is explained in terms of the hydrostatic stress distribution and the related
void growth. The affects of material hardening, surface friction and die geometry are examined in the case of extrusion.
Correlation is found between the simulations and analytical and experimental results, confirming the suitability of the
constitutive model
Keywords :
Central burst , Axisymmetric extrusion , HLC model , Void growth
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures