B. Svendsen et al., Crystal-plasticity based modeling and simulation of geometrically-necessary dislocations at a crack front in ductile single crystals, J PHYS IV, 11(PR5), 2001, pp. 171-177
This work is concerned with the formulation and numerical implementation of
a constitutive model for ductile single crystals containing cracks or othe
r geometric imperfections. In particular, attention is focused here on the
modeling of the emergence of geometrical ly-necessary dislocations (GNDs) a
t such imperfections due to inhomogeneous deformation there. To this end, w
e formulate a glide-system model for GND density consistent with the model
of Ashby and use it to extend the Cailletaud model for single crystal plast
icity to include the effects of GNDs on the material behaviour of such crys
tals. This extended model is then implemented in an FE-based 3D-simulation
of the material behaviour at a crack front in round bars consisting of sing
le crystals of the nickel superalloy SC16. In particular, preliminary simul
ation results are presented and discussed for GND development at the crack
front for two crystal-crack orientations. In these, the GND density is maxi
mal generally at the crack front in the middle and decreases toward its edg
es.