M-SERVE and P-SERVE
77
Fig. 11 Statistics of the parent grain microstructure after removing twins: (a) grain size distribution, (b) misorientation angle distribution, (c) orientation distribution of grains along [001] sample
axis shown through the pole figure, and (d) histogram of parent grain size in a 3D-SEVM of size
250 × 250 × 250 μm that is created by DREAM.3D. (Reprinted from: Bagri [29], with permission
from Springer)
of grain size, orientation, and misorientation angle, are acquired in this step.
The corresponding probability density distributions of grain size, misorientation
angle, and orientation (pole figure) are shown in Fig. 11. These distributions are
fundamental to the creation of the statistically equivalent virtual parent grain
microstructures. A virtual simulated parent grain microstructure is subsequently
created from this 3D data [35]. Figure 11d shows a parent grain size histogram in a
3D-SEVM of size 250×250×250 μm with a maximum grain size of approximately
90 μm.
Sample statistics are extracted from the EBSD data to generate probability
distribution and correlation functions of twins with respect to parent grains in step
5. These are used to insert twins in the virtual parent microstructure as described
77
Fig. 11 Statistics of the parent grain microstructure after removing twins: (a) grain size distribution, (b) misorientation angle distribution, (c) orientation distribution of grains along [001] sample
axis shown through the pole figure, and (d) histogram of parent grain size in a 3D-SEVM of size
250 × 250 × 250 μm that is created by DREAM.3D. (Reprinted from: Bagri [29], with permission
from Springer)
of grain size, orientation, and misorientation angle, are acquired in this step.
The corresponding probability density distributions of grain size, misorientation
angle, and orientation (pole figure) are shown in Fig. 11. These distributions are
fundamental to the creation of the statistically equivalent virtual parent grain
microstructures. A virtual simulated parent grain microstructure is subsequently
created from this 3D data [35]. Figure 11d shows a parent grain size histogram in a
3D-SEVM of size 250×250×250 μm with a maximum grain size of approximately
90 μm.
Sample statistics are extracted from the EBSD data to generate probability
distribution and correlation functions of twins with respect to parent grains in step
5. These are used to insert twins in the virtual parent microstructure as described
