Detailed microstructure characterisation and in-situ micropillar compression were coupled with crystal plasticity-based finite element modelling (CP-FEM) to study the micro-mechanisms of plastic anisotropy in lamellar TiAl alloys. The consideration of microstructure in both simulation and in-situ experiments enables in-depth understanding of micro-mechanisms responsible for the highly anisotropic deformation response of TiAl on the intra-lamella and inter-lamella scales. This study focuses on two specific configurations of lamellar microstructure with the interfaces being aligned and to the loading direction. Microstructure-based CP-FEM shows that longituginal slip of super and ordinary dislocations are most responsible for the plastic anis...
The influences of the microstructrual heterogeneity on the local and global mechanical behavior of a...
Titanium aluminides are the most promising intermetallics for use in aerospace and automotive applic...
Recently, the multi-phase TiAl alloys have been implemented in low-pressure turbine blades of civil ...
Fully lamellar gamma titanium aluminides are very promising materials for aerospace applications, du...
-TiAl alloys are very promising for high temperature structural applications due to their excellent ...
In this article, we present a strategy to decouple the relative influences of colony, domain and lam...
Two-phase TiAl alloys with generic microstructure of duplex to lamellar are simulated using a crysta...
Multi-phase lamellar gamma -TiAl alloys are highly anisotropic and rate sensitive. At high temperatu...
As a kind of promising aerospace material, TiAl alloys need to withstand extreme conditions such as ...
Micro and meso scale deformation behavior of a (a2+g) TiAl alloy has been investigated by multiscale...
Polysynthetically-twinned titanium aluminide (PST-TiAl), a fully lamellar γ-TiAl+α2- Ti3Al dual-phas...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
Polysynthetically-twinned titanium aluminide (PST-TiAl), a fully lamellar γ-TiAl+α2- Ti3Al dual-phas...
The mechanical behavior of intermetallic TiAl alloys is influenced by the morphology of single phase...
The influences of the microstructrual heterogeneity on the local and global mechanical behavior of a...
Titanium aluminides are the most promising intermetallics for use in aerospace and automotive applic...
Recently, the multi-phase TiAl alloys have been implemented in low-pressure turbine blades of civil ...
Fully lamellar gamma titanium aluminides are very promising materials for aerospace applications, du...
-TiAl alloys are very promising for high temperature structural applications due to their excellent ...
In this article, we present a strategy to decouple the relative influences of colony, domain and lam...
Two-phase TiAl alloys with generic microstructure of duplex to lamellar are simulated using a crysta...
Multi-phase lamellar gamma -TiAl alloys are highly anisotropic and rate sensitive. At high temperatu...
As a kind of promising aerospace material, TiAl alloys need to withstand extreme conditions such as ...
Micro and meso scale deformation behavior of a (a2+g) TiAl alloy has been investigated by multiscale...
Polysynthetically-twinned titanium aluminide (PST-TiAl), a fully lamellar γ-TiAl+α2- Ti3Al dual-phas...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
Submicron resolution deformation mapping techniques implemented into both micro and macro mechanical...
Polysynthetically-twinned titanium aluminide (PST-TiAl), a fully lamellar γ-TiAl+α2- Ti3Al dual-phas...
The mechanical behavior of intermetallic TiAl alloys is influenced by the morphology of single phase...
The influences of the microstructrual heterogeneity on the local and global mechanical behavior of a...
Titanium aluminides are the most promising intermetallics for use in aerospace and automotive applic...
Recently, the multi-phase TiAl alloys have been implemented in low-pressure turbine blades of civil ...