INIS
additives
16%
alloys
100%
anisotropy
16%
annealing
16%
compression strength
16%
connections
16%
cooling
33%
deposition
16%
dynamics
16%
fabrication
16%
flexibility
16%
fractures
33%
growth
16%
heat treatments
100%
heating
50%
high temperature
16%
lasers
83%
layers
33%
length
16%
levels
50%
losses
16%
manufacturing
16%
martensite
33%
mechanical properties
100%
melting
83%
microstructure
100%
powders
16%
stability
16%
strains
33%
values
16%
yield strength
16%
Engineering
Additive Manufacturing Technology
16%
Alloy
33%
Baseplate
16%
Build Material
16%
Compressive Strength
16%
Cooling Rate
16%
Event
16%
Fabrication
16%
Fracture Strain
33%
Full Annealing
16%
Heat Treatment
100%
Heating Temperature
50%
High Cooling Rate
16%
High Temperature
16%
Initial Phase
16%
Length Scale
16%
Loss
16%
Martensite
16%
Martensite Microstructure
16%
Mechanical Properties
100%
Microstructure
100%
Microstructure Evolution
33%
Powder Bed
16%
Selective Laser Melting
83%
Temperature
50%
Ti-6al-4v
16%
Ti-6al-4v Alloy
100%
Yield Strength
16%
Material Science
Alloy
100%
Anisotropy
14%
Annealing
14%
Compressive Strength
14%
Heat Treatment
100%
Martensite
28%
Materials
14%
Mechanical Strength
14%
Microstructure
100%
Powder
14%
Selective Laser Melting
71%
Temperature
100%
Three Dimensional Printing
14%
Ti-6Al-4V
100%
Yield Stress
14%
Keyphrases
Acicular Martensite
16%
Full Annealing
16%
High Cooling Rate
16%
Melting Heat
66%
Moderate Heating
16%
Powder Bed
16%
Transus Temperature
16%