Index
401
Finite element method (FEM), 70, 75, 185,
272–273, 284, 308, 322
application, 241–245
FEMU, 167
heterogeneous local properties, 290
inclusion, 12
local response comparisons, 192
MD, 285
multiscale simulation method, 288
Ni-based superalloys, 56
SERVEs, 322
SEVMs, 70
3D structure, 93
Finite element model updating (FEMU), 167
Flyer-plate, 383, 389
Focused ion beam (FIB), 98–100
balance stage movements, 11
DualBeam FIB-SEM, 7
EBSD data, 5
microstructure, 93
microtensile samples, 102
PFIB, 4, 94
Free volume (FV), 279–281
G
Gamma function, 354
Global-local methods
computational model, 179–181
data flow, 179–181
Grain boundary
FIB, 130
fine-grained microstructures, 147
microvolumes, 13
misorientations, 26, 81
parameters, 3
purity materials, 215
vonMises stress vs. distance, 216–218
H
Heterogeneous
anisotropic behavior, 175
distributed microstructure, 3
domains, 70
dynamic environments, 367
ESBCs, 300
explosives, 383, 384
microstructure, 252
polycrystalline sample, 116
property measurements, 368–370
reactive powder mixtures, 383, 384
stress-strain field, 181
transverse cracking pattern, 336
High energy diffraction microscopy (HEDM),
4, 94–95, 118, 119, 195
High-resolution EBSD (HREBSD), 169–171,
180, 181, 188, 193, 194
Hydrocode, 375, 382, 386
I
Image processing, 7, 24, 25, 31, 40, 60–61,
100, 255, 318
Inclusions
circular fiber, 233
CP model, 167
disk alloys, 1
ellipsoidal, 305
geometry and location, 304
heterogeneous materials, 367
location-dependent indicator, 303
MVE, 306
nonmetallic, 2
TriBeam dataset, 12
Inconel 718
cyclic behavior, 135
lattice structure, 130
strain rate sensitivity, 131
superalloy, 129
Individual parameter variation
data
collection, 240–241
processing parameters, 238–240
error measurements, 231–232
interaction volume, 237
processing error, 240–241
resolution
analytical model, 234–237
material types, 234
MMV, 233
unindexed pixels, 238
Integrated computational materials engineering
(ICME)
and CEIMM, 19
challenges, 21–22
coarse-grained methods, 370–374
data schema and workflow tool
access, 29
handling requirements, 26–27
metadata labeling, 29
modular workflow, 27–29
DREAM.3D, 39–40
filters, 36–38
key features, 20–21
MD, 370–374
meso-scale, 374–377
401
Finite element method (FEM), 70, 75, 185,
272–273, 284, 308, 322
application, 241–245
FEMU, 167
heterogeneous local properties, 290
inclusion, 12
local response comparisons, 192
MD, 285
multiscale simulation method, 288
Ni-based superalloys, 56
SERVEs, 322
SEVMs, 70
3D structure, 93
Finite element model updating (FEMU), 167
Flyer-plate, 383, 389
Focused ion beam (FIB), 98–100
balance stage movements, 11
DualBeam FIB-SEM, 7
EBSD data, 5
microstructure, 93
microtensile samples, 102
PFIB, 4, 94
Free volume (FV), 279–281
G
Gamma function, 354
Global-local methods
computational model, 179–181
data flow, 179–181
Grain boundary
FIB, 130
fine-grained microstructures, 147
microvolumes, 13
misorientations, 26, 81
parameters, 3
purity materials, 215
vonMises stress vs. distance, 216–218
H
Heterogeneous
anisotropic behavior, 175
distributed microstructure, 3
domains, 70
dynamic environments, 367
ESBCs, 300
explosives, 383, 384
microstructure, 252
polycrystalline sample, 116
property measurements, 368–370
reactive powder mixtures, 383, 384
stress-strain field, 181
transverse cracking pattern, 336
High energy diffraction microscopy (HEDM),
4, 94–95, 118, 119, 195
High-resolution EBSD (HREBSD), 169–171,
180, 181, 188, 193, 194
Hydrocode, 375, 382, 386
I
Image processing, 7, 24, 25, 31, 40, 60–61,
100, 255, 318
Inclusions
circular fiber, 233
CP model, 167
disk alloys, 1
ellipsoidal, 305
geometry and location, 304
heterogeneous materials, 367
location-dependent indicator, 303
MVE, 306
nonmetallic, 2
TriBeam dataset, 12
Inconel 718
cyclic behavior, 135
lattice structure, 130
strain rate sensitivity, 131
superalloy, 129
Individual parameter variation
data
collection, 240–241
processing parameters, 238–240
error measurements, 231–232
interaction volume, 237
processing error, 240–241
resolution
analytical model, 234–237
material types, 234
MMV, 233
unindexed pixels, 238
Integrated computational materials engineering
(ICME)
and CEIMM, 19
challenges, 21–22
coarse-grained methods, 370–374
data schema and workflow tool
access, 29
handling requirements, 26–27
metadata labeling, 29
modular workflow, 27–29
DREAM.3D, 39–40
filters, 36–38
key features, 20–21
MD, 370–374
meso-scale, 374–377
