International audienceNumerical and experimental evolutions of slip fields in notched Ni-Base Single Crystal superalloy tensile specimens are presented as a function of secondary crystallographic orientation. The numerical predictions based on three-dimensional anisotropic elasticity and crystal plasticity are compared with experimental observations. The results illustrate the strong dependence of the slip patterns and the plastic zone size and shape on the secondary orientation of notches, which can have important consequences on crack initiation. Specific orientations or non-symmetric notch geometries lead to non-symmetric patterns on both sides of the sample. The computations show that strongly different plastic zones are expected in the...
Small-scale yielding around a stationary mode I crack in a cubic single crystal is analyzed in terms...
Single crystal superalloys, mostly Nickel-based, have been, so far, the material of choice for high-...
Single-crystal nickel-base superalloys frequently experience two distinct fatigue crack growth modes...
AbstractNumerical and experimental investigations of evolution of slip fields in notched Ni-base sup...
International audienceCrystal plasticity simulations and experiments of cylindrical indentation on N...
Since Ni-based single-crystal superalloys are anisotropic materials, their behavior in different cry...
International audienceThree-dimensional Finite Element simulations of mode I crack tip fields in Com...
The inherent anisotropy of single-crystal nickel-base superalloys brings many difficulties in terms ...
In this work, the effect of lattice orientation on the fields prevailing near a notch tip is investi...
The deformation mechanism correlations with individual grain orientation, overall texture, grain bou...
Sub-critical intergranular crack growth is an important creep fracture mechanism in polycrystalline ...
An advanced constitutive model incorporating two specific aspects of Ni-base superalloy deformation ...
This dissertation expands upon the current knowledge of plastic deformation in nickel-based superall...
Fatigue crack growth was investigated in a 001 oriented single crystal specimen, made of a Ni-based ...
Small-scale yielding around a stationary mode I crack in a cubic single crystal is analyzed in terms...
Small-scale yielding around a stationary mode I crack in a cubic single crystal is analyzed in terms...
Single crystal superalloys, mostly Nickel-based, have been, so far, the material of choice for high-...
Single-crystal nickel-base superalloys frequently experience two distinct fatigue crack growth modes...
AbstractNumerical and experimental investigations of evolution of slip fields in notched Ni-base sup...
International audienceCrystal plasticity simulations and experiments of cylindrical indentation on N...
Since Ni-based single-crystal superalloys are anisotropic materials, their behavior in different cry...
International audienceThree-dimensional Finite Element simulations of mode I crack tip fields in Com...
The inherent anisotropy of single-crystal nickel-base superalloys brings many difficulties in terms ...
In this work, the effect of lattice orientation on the fields prevailing near a notch tip is investi...
The deformation mechanism correlations with individual grain orientation, overall texture, grain bou...
Sub-critical intergranular crack growth is an important creep fracture mechanism in polycrystalline ...
An advanced constitutive model incorporating two specific aspects of Ni-base superalloy deformation ...
This dissertation expands upon the current knowledge of plastic deformation in nickel-based superall...
Fatigue crack growth was investigated in a 001 oriented single crystal specimen, made of a Ni-based ...
Small-scale yielding around a stationary mode I crack in a cubic single crystal is analyzed in terms...
Small-scale yielding around a stationary mode I crack in a cubic single crystal is analyzed in terms...
Single crystal superalloys, mostly Nickel-based, have been, so far, the material of choice for high-...
Single-crystal nickel-base superalloys frequently experience two distinct fatigue crack growth modes...