Dislocation interactions at the crack nucleation site were investigated in near-alpha titanium alloy Ti-6242Si subjected to low cycle fatigue. Cyclic plastic strain in the alloy resulted in dislocation pile-ups in the primary alpha grains, nucleated at the boundaries between the primary alpha and the two-phase regions. These two phase regions provided a barrier to slip transfer between primary alpha grains. We suggest that crack nucleation occurred near the basal plane of primary alpha grains by the subsurface double-ended pile-up mechanism first conceived by Tanaka and Mura. Superjogs on the basal dislocations were observed near the crack nucleation location. The two phase regions showed direct transmission of dislocations between secondar...
Titanium alloys are often used in aerospace applications in which they are subjected to cyclic loadi...
Slip intermittency and stress oscillations in titanium alloy Ti-7Al-O that were observed using in-si...
In the very high cycle fatigue regime, the location of crack initiation in titanium alloys is known ...
Dislocation interactions were investigated in near-alpha titanium alloy Ti6242Si after low cycle fat...
The dislocation structures appearing in highly mis-oriented soft/hard grain pairs in near-alphatitan...
The focus of this paper is the mechanistic basis of the load shedding phenomenon that occurs under t...
AbstractThe focus of this paper is the mechanistic basis of the load shedding phenomenon that occurs...
Dislocation transmission through α/β phase boundaries in titanium alloys is studied using integrated...
During service of gas turbine engines, high cycle fatigue of titanium is a leading cause of componen...
The present work deals with the room and high temperature microstructure evolutions of a near alpha ...
Alpha phase exhibits equiaxed or lamellar morphologies with size from submicron to microns in an alp...
As current aerospace materials are subjected in service to increasingly onerous conditions of stres...
This paper is focused on fatigue crack initiation and early growth in two-phase titanium alloy VT3-1...
Fatigue is a difficult multi-scale modelling problem nucleating from localised plasticity at the sca...
The focus of this project is the mechanistic basis of the load shedding phenomenon that occurs under...
Titanium alloys are often used in aerospace applications in which they are subjected to cyclic loadi...
Slip intermittency and stress oscillations in titanium alloy Ti-7Al-O that were observed using in-si...
In the very high cycle fatigue regime, the location of crack initiation in titanium alloys is known ...
Dislocation interactions were investigated in near-alpha titanium alloy Ti6242Si after low cycle fat...
The dislocation structures appearing in highly mis-oriented soft/hard grain pairs in near-alphatitan...
The focus of this paper is the mechanistic basis of the load shedding phenomenon that occurs under t...
AbstractThe focus of this paper is the mechanistic basis of the load shedding phenomenon that occurs...
Dislocation transmission through α/β phase boundaries in titanium alloys is studied using integrated...
During service of gas turbine engines, high cycle fatigue of titanium is a leading cause of componen...
The present work deals with the room and high temperature microstructure evolutions of a near alpha ...
Alpha phase exhibits equiaxed or lamellar morphologies with size from submicron to microns in an alp...
As current aerospace materials are subjected in service to increasingly onerous conditions of stres...
This paper is focused on fatigue crack initiation and early growth in two-phase titanium alloy VT3-1...
Fatigue is a difficult multi-scale modelling problem nucleating from localised plasticity at the sca...
The focus of this project is the mechanistic basis of the load shedding phenomenon that occurs under...
Titanium alloys are often used in aerospace applications in which they are subjected to cyclic loadi...
Slip intermittency and stress oscillations in titanium alloy Ti-7Al-O that were observed using in-si...
In the very high cycle fatigue regime, the location of crack initiation in titanium alloys is known ...