Title of article :
Numerical simulations of void linkage in model materials using
a nonlocal ductile damage approximation
Author/Authors :
Arnaud Weck، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
Experiments on the growth and linkage of
10 μm diameter holes laser drilled in high precision
patterns into Al-plates were modelled with finite elements.
The simulations used geometries identical to
those of the experiments and incorporated ductile damage
by element removal under the control of a ductile
damage indicator based on the micromechanical studies
of Rice and Tracey. A regularization of the problem
was achieved through an integral-type nonlocal
model based on the smoothing of the rate of a damage
indicator D over a characteristic length L. Thesimulation does not predict the experimentally observed
damage acceleration either in the case where no damage
is included or when only a local damage model is
used. However, the full three-dimensional simulations
based on the nonlocal damage methodology do predict
both the failure path and the failure strain at void linkage
for almost all configurations studied. For the cases
considered the critical parameter controlling the local
deformations at void linkage was found to be the ratio
between hole diameter and hole spacing.
Keywords :
Linkage · Coalescence · Ductilefracture · Nonlocal damage models · Finite element ·Laser drilled model material
Journal title :
International Journal of Fracture
Journal title :
International Journal of Fracture