First principles calculations were done to evaluate the lattice parameter, cohesive energy and stacking fault energies of ordered gamma' (Ll(2)) precipitates in superalloys as a function of composition. It was found that addition of Ti and Ta lead to an increase in lattice parameter and decrease in cohesive energy, while Ni antisites had the opposite effect. Ta and Ti addition to stoichiometric Ni3Al resulted in an initial increase in the energies of APB((111)), CSF(111), APB((001)) and SISF(111). However, at higher concentrations, the fault energies decreased. Addition of Ni antisites decreased the energy of all four faults monotonically. A model based on nearest neighbor bonding was used for Ni-3(Al, Ta), Ni-3(Al, Ti) and Ni-3(Al, Ni) pse...
Generalised stacking fault energy surfaces (Γ-surfaces) are calculated for Co-Al-W-based and Ni-Al-b...
The first principles calculations were performed to study the sit preferences and effects on elastic...
Planar fault energies in superalloys are largely responsible for the complex deformation processes o...
First principles calculations were done to evaluate the lattice parameter, cohesive energy and stack...
The shearing of ordered gamma' precipitates by matrix dislocations results in the formation of antip...
The shearing of ordered gamma' precipitates by matrix dislocations results in the formation of antip...
The shearing of ordered γ′ precipitates by matrix dislocations results in the formation of antiphase...
The shearing of ordered γ′ precipitates by matrix dislocations results in the formation of antiphase...
Mechanical properties of Ni-based superalloys strongly depend on phase and site preferences of alloy...
Advanced mechanical properties of Ni-based superalloys strongly depend on the site preferences of al...
First principles calculations are used to investigate the segregation behaviour of Co, Cr, Re, Mo an...
Ordered intermetallics have emerged as promising candidates for high temperature structural applicat...
Nickel based superalloys have superior high temperature mechanical strength, corrosion and creep res...
The high temperature strength of alloys with (gamma +gamma') microstructure is primarily due to the ...
Nickel-based superalloys are exceptional materials due to their novel two phase (γ-γ') microstructur...
Generalised stacking fault energy surfaces (Γ-surfaces) are calculated for Co-Al-W-based and Ni-Al-b...
The first principles calculations were performed to study the sit preferences and effects on elastic...
Planar fault energies in superalloys are largely responsible for the complex deformation processes o...
First principles calculations were done to evaluate the lattice parameter, cohesive energy and stack...
The shearing of ordered gamma' precipitates by matrix dislocations results in the formation of antip...
The shearing of ordered gamma' precipitates by matrix dislocations results in the formation of antip...
The shearing of ordered γ′ precipitates by matrix dislocations results in the formation of antiphase...
The shearing of ordered γ′ precipitates by matrix dislocations results in the formation of antiphase...
Mechanical properties of Ni-based superalloys strongly depend on phase and site preferences of alloy...
Advanced mechanical properties of Ni-based superalloys strongly depend on the site preferences of al...
First principles calculations are used to investigate the segregation behaviour of Co, Cr, Re, Mo an...
Ordered intermetallics have emerged as promising candidates for high temperature structural applicat...
Nickel based superalloys have superior high temperature mechanical strength, corrosion and creep res...
The high temperature strength of alloys with (gamma +gamma') microstructure is primarily due to the ...
Nickel-based superalloys are exceptional materials due to their novel two phase (γ-γ') microstructur...
Generalised stacking fault energy surfaces (Γ-surfaces) are calculated for Co-Al-W-based and Ni-Al-b...
The first principles calculations were performed to study the sit preferences and effects on elastic...
Planar fault energies in superalloys are largely responsible for the complex deformation processes o...