Gradient-enhanced model
 
 
 
Distribution of  (left) and
 (left) and  (right) for gradient-enhanced model and internal length equal to 10 mm.
See poster Fig. 3 (top, left).
White parts of the sample are caused by graphic problems.
 (right) for gradient-enhanced model and internal length equal to 10 mm.
See poster Fig. 3 (top, left).
White parts of the sample are caused by graphic problems.
Viscoplastic model
 
 
 
Plot of  along horizontal axis made in the center of the sample.
 along horizontal axis made in the center of the sample.
 
 
 
Distribution of  (left) and
 (left) and  (right) for viscoplastic model and viscosity equal to 0.0004.
See poster Fig. 4.
White parts of the sample are caused by graphic problems.
 (right) for viscoplastic model and viscosity equal to 0.0004.
See poster Fig. 4.
White parts of the sample are caused by graphic problems.
Gradient-enhanced model
 
Distribution of  for gradient-enhanced model and internal length equal to 10 mm.
See poster Fig. 3 (bottom, left) and Fig. 5
 for gradient-enhanced model and internal length equal to 10 mm.
See poster Fig. 3 (bottom, left) and Fig. 5
Viscoplastic model
 
 
Distribution of  for viscoplastic model and viscosity equal to 4 (left) and 0.04 (right).
See poster Fig. 3 (top, right)
 for viscoplastic model and viscosity equal to 4 (left) and 0.04 (right).
See poster Fig. 3 (top, right)
Theory
More information about theory can be found in our publications: acme or aip
email: Marzena.Mucha(at)pk.edu.pl
Computations for thermo-visco-plastic model
 
 
Middle strain rate, fine mesh,thermo-visco-plastic model,  (left),
 (left),  T (right)
T (right)
 
 
Middle strain rate, fine mesh,thermo-visco-plastic model with gradient enhacement,  (left),
 (left),  T (right)
T (right)