International audienceThe prediction of the creep behaviour and life of components of aeronautic engines like high pressure turbine blades is still a challenging issue due to non-isothermal loadings. Indeed, certification procedures of turboshaft engines for helicopters consist of complex thermomechanical histories, sometimes including short and very high temperature excursions close to the γ'-solvus (T~1200°C) of the blade alloy. A better design of those components could be gained using a model that takes into account non-isothermal loadings inducing microstructural changes. Most of the commonly used models consider only a nearly constant (or slowly evolving) microstructure, i.e. far from the rapid microstructure evolutions encountered dur...
In view of the turbine entry temperature evolution, the main challenge for metallurgists is to elabo...
Nickel-based singe crystal superalloys are a class of metallic materials with a combination of high-...
Single crystal superalloys, mostly Nickel-based, have been, so far, the material of choice for high-...
The prediction of the creep behaviour and life of components of aeronautic engines like high pressur...
International audienceThe prediction of the viscoplastic behaviour of Ni-based single crystal supera...
The creep of high pressure turbine blades is a critical issue for the certification of a helicopter ...
The prediction of the viscoplastic behavior of nickel-based single crystal superalloys remains a cha...
International audienceThe prediction of the viscoplastic behavior of Ni-based single crystal superal...
This work is in the context of modeling and predicting the life of high pressure turbine blades of g...
A 3D phenomenological model coupling viscoplasticity, microstructural evolutions and damage is propo...
The deformation of structural alloys presents problems for power plants and aerospace applications d...
Nickel-based single-crystal superalloys are commonly used as the material of choice for turbine blad...
La tenue au fluage des aubes de turbine haute pression est une problématique de premier ordre vis-à-...
Several theories of creep and creep rupture are reviewed. Specific attention is devoted to the britt...
An extension of the constitutive viscoplastic model of Meric and Cailletaud is presented. The new mo...
In view of the turbine entry temperature evolution, the main challenge for metallurgists is to elabo...
Nickel-based singe crystal superalloys are a class of metallic materials with a combination of high-...
Single crystal superalloys, mostly Nickel-based, have been, so far, the material of choice for high-...
The prediction of the creep behaviour and life of components of aeronautic engines like high pressur...
International audienceThe prediction of the viscoplastic behaviour of Ni-based single crystal supera...
The creep of high pressure turbine blades is a critical issue for the certification of a helicopter ...
The prediction of the viscoplastic behavior of nickel-based single crystal superalloys remains a cha...
International audienceThe prediction of the viscoplastic behavior of Ni-based single crystal superal...
This work is in the context of modeling and predicting the life of high pressure turbine blades of g...
A 3D phenomenological model coupling viscoplasticity, microstructural evolutions and damage is propo...
The deformation of structural alloys presents problems for power plants and aerospace applications d...
Nickel-based single-crystal superalloys are commonly used as the material of choice for turbine blad...
La tenue au fluage des aubes de turbine haute pression est une problématique de premier ordre vis-à-...
Several theories of creep and creep rupture are reviewed. Specific attention is devoted to the britt...
An extension of the constitutive viscoplastic model of Meric and Cailletaud is presented. The new mo...
In view of the turbine entry temperature evolution, the main challenge for metallurgists is to elabo...
Nickel-based singe crystal superalloys are a class of metallic materials with a combination of high-...
Single crystal superalloys, mostly Nickel-based, have been, so far, the material of choice for high-...