Room-temperature deformation of a niobium-rich TiAl alloy with duplex microstructure has been numerically investigated. The model links the microstructural features at micro- and meso-scale by the two-level (FE2) multi-scale approach. The deformation mechanisms of the considered phases were described in the micro-mechanical crystal-plasticity model. Initial material parameters for the model were taken from the literature and validated using tensile experiments at macro-scale. For the niobium-rich TiAl alloy further adaptation of the crystal plasticity parameters is proposed. Based on these model parameters, the influences of the grain orientation, grain size, and texture on the global mechanical behavior have been investigated. The contrib...
International audienceThe current understanding of room temperature microplasticity in α/β titanium ...
The report on state of art in modelling of microstructure and deformation behaviour of selected allo...
Recently, the multi-phase TiAl alloys have been implemented in low-pressure turbine blades of civil ...
Room temperature deformation behavior of niobium-containing two-phase TiAl alloy has been investigat...
Room temperature deformation behaviour of niobium-containing two-phase TiAl alloy has been investiga...
The 3-dimensional microstructure of a duplex g-TiAl has been modeled in a parameterized FE-model usi...
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 ...
The multi-phase TiAl intermetallics for the application in aero-engine turbine blades have complex m...
The mechanical properties of TiAl alloys are very sensitive to the inherent microstructure. For an i...
The influences of the microstructrual heterogeneity on the local and global mechanical behavior of a...
Micro and meso scale deformation behavior of a (a2+g) TiAl alloy has been investigated by multiscale...
A TiAl-Nb alloy was prepared by casting, and its tensile properties and microstructure evolution at ...
For predictive analyses of materials and structures made of multi-phase TiAl alloys, available numer...
In TiAl alloys the lamellar spacing influences the elastic, plastic, and creep behavior. To predict ...
International audienceThe current understanding of room temperature microplasticity in α/β titanium ...
The report on state of art in modelling of microstructure and deformation behaviour of selected allo...
Recently, the multi-phase TiAl alloys have been implemented in low-pressure turbine blades of civil ...
Room temperature deformation behavior of niobium-containing two-phase TiAl alloy has been investigat...
Room temperature deformation behaviour of niobium-containing two-phase TiAl alloy has been investiga...
The 3-dimensional microstructure of a duplex g-TiAl has been modeled in a parameterized FE-model usi...
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 ...
The multi-phase TiAl intermetallics for the application in aero-engine turbine blades have complex m...
The mechanical properties of TiAl alloys are very sensitive to the inherent microstructure. For an i...
The influences of the microstructrual heterogeneity on the local and global mechanical behavior of a...
Micro and meso scale deformation behavior of a (a2+g) TiAl alloy has been investigated by multiscale...
A TiAl-Nb alloy was prepared by casting, and its tensile properties and microstructure evolution at ...
For predictive analyses of materials and structures made of multi-phase TiAl alloys, available numer...
In TiAl alloys the lamellar spacing influences the elastic, plastic, and creep behavior. To predict ...
International audienceThe current understanding of room temperature microplasticity in α/β titanium ...
The report on state of art in modelling of microstructure and deformation behaviour of selected allo...
Recently, the multi-phase TiAl alloys have been implemented in low-pressure turbine blades of civil ...