Spherical indentation of a porous brittle La0.6Sr0.4Co0.2Fe0.8O3 ceramic film (porosity=39.7%) on a stiffer elastic Ce0.9Gd0.1O1.95 substrate is simulated by finite element modelling incorporating the Gurson model to account for densification. The simulated load-displacement curves, apparent elastic modulus E, indentation hardness H and densification profile are all in good agreement with experimental data for the film. The simulations show that E and H are not sensitive to film residual stress. However E is very sensitive to the indent depth-film thickness ratio f, although H is less so for f<0.3. The simulated dependence of E and H on f are highly consistent with experimental data, supporting the extrapolation of E and H measured for 0.1<...
AbstractPorous La0.6Sr0.4Co0.2Fe0.8O3−δ ceramic films with different porosities were fabricated by c...
International audienceThe elastic modulus of thin films can be directly determined by instrumented i...
Our concern here is to rationalize experimental observations of failure modes brought about by inden...
AbstractSpherical indentation of a porous brittle La0.6Sr0.4Co0.2Fe0.8O3 ceramic film (porosity=39.7...
AbstractA combined experimental and numerical approach is used to characterise the elastic and plast...
Spherical indentation of thin 8YSZ ceramic layers on porous substrates (NiO/Ni-8YSZ) was studied. In...
A combined experimental-numerical approach is used to characterise the fracture of a porous bulk cer...
In this work, an axisymmetric two-dimensional finite element model was developed to simulate instrum...
AbstractA combined experimental-numerical approach is used to characterise the fracture of a porous ...
The need for more components that are more resistant to wear and corrosion has promoted a growing in...
In this paper, finite element simulations of spherical indentation of a thin hard film deposited on ...
In this work, different methods to estimate the value of thin film residual stresses using instrumen...
AbstractIn this paper, finite element simulations of spherical indentation of a thin hard film depos...
Thin films that are functionally gradient improve the mechanical properties of film-substrate layere...
Hard ceramic films of micrometric thickness deposited on a soft metallic substrate have ushered in a...
AbstractPorous La0.6Sr0.4Co0.2Fe0.8O3−δ ceramic films with different porosities were fabricated by c...
International audienceThe elastic modulus of thin films can be directly determined by instrumented i...
Our concern here is to rationalize experimental observations of failure modes brought about by inden...
AbstractSpherical indentation of a porous brittle La0.6Sr0.4Co0.2Fe0.8O3 ceramic film (porosity=39.7...
AbstractA combined experimental and numerical approach is used to characterise the elastic and plast...
Spherical indentation of thin 8YSZ ceramic layers on porous substrates (NiO/Ni-8YSZ) was studied. In...
A combined experimental-numerical approach is used to characterise the fracture of a porous bulk cer...
In this work, an axisymmetric two-dimensional finite element model was developed to simulate instrum...
AbstractA combined experimental-numerical approach is used to characterise the fracture of a porous ...
The need for more components that are more resistant to wear and corrosion has promoted a growing in...
In this paper, finite element simulations of spherical indentation of a thin hard film deposited on ...
In this work, different methods to estimate the value of thin film residual stresses using instrumen...
AbstractIn this paper, finite element simulations of spherical indentation of a thin hard film depos...
Thin films that are functionally gradient improve the mechanical properties of film-substrate layere...
Hard ceramic films of micrometric thickness deposited on a soft metallic substrate have ushered in a...
AbstractPorous La0.6Sr0.4Co0.2Fe0.8O3−δ ceramic films with different porosities were fabricated by c...
International audienceThe elastic modulus of thin films can be directly determined by instrumented i...
Our concern here is to rationalize experimental observations of failure modes brought about by inden...