A physical model for the creep deformation of single crystal superalloys is presented that is sensitive to chemical composition and microstructure. The rate-controlling step is assumed to be climb of dislocations at the matrix/particle interfaces and their rate of escape from trapped configurations; a strong dependence on alloy composition then arises. By testing the predictions of the model against the considerable body of published experimental data, the dependence of the kinetics of creep deformation on alloy chemistry is rationalized. The effects of microstructural scale - precipitate size, geometry and spacing - are also studied. The climb processes assumed at the matrix/precipitate interfaces give rise to the vacancy flux required for...
The single crystal nickel-based superalloys with different dendrite spacings were prepared by using ...
This thesis presents work carried out to develop the understanding of microstructural evolution and ...
The present study employs molecular dynamics simulations of Ni-based superalloy to investigate the c...
In this work a physics based creep model is presented to predict the behaviour in the Nickel based s...
Cast nickel-based superalloys are used for blades in land-based, energy conversion and powerplant ap...
The degradation of creep resistance in Ni-based single-crystal superalloys is essentially ascribed t...
Mid-temperature creep deformation in the range of 600 to 850°C is assuming greater importance in...
International audienceThe prediction of the viscoplastic behavior of Ni-based single crystal superal...
International audienceNickel base superalloys are widely used to manufacture critical mobile and sta...
The creep properties of different γ'-Ni3Al distributions in the Ni115 nickel superalloy produced by ...
Creep tests were performed on MC2 single crystal superalloy at 950°C/200 MPa and 1150°C/80 MPa under...
International audienceCreep tests have been performed on MC2 single crystal superalloy at 950°C/200 ...
It has been recently shown that microtwinning is the principal deformation mechanism under certain c...
International audienceMiniature tensile creep specimens are used to investigate the effect of mild c...
Nickel based single crystal Superalloys are finding wide spread use in high temperature gas turbines...
The single crystal nickel-based superalloys with different dendrite spacings were prepared by using ...
This thesis presents work carried out to develop the understanding of microstructural evolution and ...
The present study employs molecular dynamics simulations of Ni-based superalloy to investigate the c...
In this work a physics based creep model is presented to predict the behaviour in the Nickel based s...
Cast nickel-based superalloys are used for blades in land-based, energy conversion and powerplant ap...
The degradation of creep resistance in Ni-based single-crystal superalloys is essentially ascribed t...
Mid-temperature creep deformation in the range of 600 to 850°C is assuming greater importance in...
International audienceThe prediction of the viscoplastic behavior of Ni-based single crystal superal...
International audienceNickel base superalloys are widely used to manufacture critical mobile and sta...
The creep properties of different γ'-Ni3Al distributions in the Ni115 nickel superalloy produced by ...
Creep tests were performed on MC2 single crystal superalloy at 950°C/200 MPa and 1150°C/80 MPa under...
International audienceCreep tests have been performed on MC2 single crystal superalloy at 950°C/200 ...
It has been recently shown that microtwinning is the principal deformation mechanism under certain c...
International audienceMiniature tensile creep specimens are used to investigate the effect of mild c...
Nickel based single crystal Superalloys are finding wide spread use in high temperature gas turbines...
The single crystal nickel-based superalloys with different dendrite spacings were prepared by using ...
This thesis presents work carried out to develop the understanding of microstructural evolution and ...
The present study employs molecular dynamics simulations of Ni-based superalloy to investigate the c...