In this article, we present a strategy to decouple the relative influences of colony, domain and lamella boundary strengthening in fully lamellar titanium aluminide alloys, using a physics-based crystal plasticity modeling strategy. While lamella and domain boundary strengthening can be isolated in experiments using polysynthetically twinned crystals or mircomechanical testing, colony boundary strengthening can only be investigated in specimens in which all three strengthening mechanisms act simultaneously. Thus, isolating the colony boundary strengthening Hall–Petch coefficient K C experimentally requires a sufficient number of specimens with different colony sizes λ C but constant lamella thickness λ L and domain s...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
In der vorliegenden Arbeit wird ein thermomechanisch gekoppeltes, defektdichtebasiertes Kristallplas...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
The two-phase Titaniumaluminide alloys show poor ductility and brittle fracture at room tempera-ture...
The mechanical behavior of intermetallic TiAl alloys is influenced by the morphology of single phase...
Detailed microstructure characterisation and in-situ micropillar compression were coupled with cryst...
The relative activity of deformation systems during work hardening and thermal recovery has been inv...
In TiAl alloys the lamellar spacing influences the elastic, plastic, and creep behavior. To predict ...
Fully lamellar gamma titanium aluminides are very promising materials for aerospace applications, du...
The crack growth across a boundary between two colonies, i.e. regions of differing lamellar orientat...
Two-phase TiAl alloys with generic microstructure of duplex to lamellar are simulated using a crysta...
-TiAl alloys are very promising for high temperature structural applications due to their excellent ...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
In der vorliegenden Arbeit wird ein thermomechanisch gekoppeltes, defektdichtebasiertes Kristallplas...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
The two-phase Titaniumaluminide alloys show poor ductility and brittle fracture at room tempera-ture...
The mechanical behavior of intermetallic TiAl alloys is influenced by the morphology of single phase...
Detailed microstructure characterisation and in-situ micropillar compression were coupled with cryst...
The relative activity of deformation systems during work hardening and thermal recovery has been inv...
In TiAl alloys the lamellar spacing influences the elastic, plastic, and creep behavior. To predict ...
Fully lamellar gamma titanium aluminides are very promising materials for aerospace applications, du...
The crack growth across a boundary between two colonies, i.e. regions of differing lamellar orientat...
Two-phase TiAl alloys with generic microstructure of duplex to lamellar are simulated using a crysta...
-TiAl alloys are very promising for high temperature structural applications due to their excellent ...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...
TiAl-alloys exhibit complex microstructures, which involve in so called “lamellar” or “duplex” alloy...