International audienceAn explicit polynomial strain-energy function for tetragonal-orthorhombic-monoclinic zirconia (ZrO2), calibrated from the conventional hydrostatic p−T phase diagram, is used to study the effects of nonhydrostatic loading on the phase equilibria in this material. Several representative sections of the phase diagram of ZrO2 in temperature and stress space, containing both triple and critical points, are computed. A new orthorhombic structure of ZrO2 is predicted to be the most stable phase for a variety of experimentally accessible shear loads, in a wide range of temperatures and pressures
Currently there is ambiguity about the space group of the first high pressure phase of Z...
The phase relations and equation of state of ZrO2 were investigated up to 100 GPa by means of in sit...
Angular-dispersive x-ray in situ powder-diffraction experiments have been performed on pure zirconia...
International audienceAn explicit polynomial strain-energy function for tetragonal-orthorhombic-mono...
An explicit polynomial strain-energy function for tetragonal-orthorhombic-monoclinic zirconia (ZrO2)...
We compute an explicit lowest-order polynomial form of the strain-dependent Gibbs potential which pr...
The tetragonal form of ZrO2 is used in a wide range of technologies. In this study, we systematicall...
The stability of ZrO2 in the tensile regime is studied using an ab initio constant-pressure techniqu...
WOS: 000273854100016The stability of ZrO2 in the tensile regime is studied using an ab initio consta...
Bulk structures of unstabilized ZrO{sub 2-x}, with x in the range of 0 {<=} x {<=} 0.44, at am...
The peculiar behavior of active crystals is due to the presence of evolving phase mixtures the varie...
In this work, we present a phase field model to understand how applied stresses can trigger the tetr...
A framework for modeling complex global energy landscapes in a piecewise manner is presented. Specif...
Mechanisms of tetragonal phase stabilisation, at room temperature, in nanocrystalline (\u3c100 nm), ...
The crystal thermodynamics of zirconia (ZrO_2) has been investigated using an orthogonal self-consis...
Currently there is ambiguity about the space group of the first high pressure phase of Z...
The phase relations and equation of state of ZrO2 were investigated up to 100 GPa by means of in sit...
Angular-dispersive x-ray in situ powder-diffraction experiments have been performed on pure zirconia...
International audienceAn explicit polynomial strain-energy function for tetragonal-orthorhombic-mono...
An explicit polynomial strain-energy function for tetragonal-orthorhombic-monoclinic zirconia (ZrO2)...
We compute an explicit lowest-order polynomial form of the strain-dependent Gibbs potential which pr...
The tetragonal form of ZrO2 is used in a wide range of technologies. In this study, we systematicall...
The stability of ZrO2 in the tensile regime is studied using an ab initio constant-pressure techniqu...
WOS: 000273854100016The stability of ZrO2 in the tensile regime is studied using an ab initio consta...
Bulk structures of unstabilized ZrO{sub 2-x}, with x in the range of 0 {<=} x {<=} 0.44, at am...
The peculiar behavior of active crystals is due to the presence of evolving phase mixtures the varie...
In this work, we present a phase field model to understand how applied stresses can trigger the tetr...
A framework for modeling complex global energy landscapes in a piecewise manner is presented. Specif...
Mechanisms of tetragonal phase stabilisation, at room temperature, in nanocrystalline (\u3c100 nm), ...
The crystal thermodynamics of zirconia (ZrO_2) has been investigated using an orthogonal self-consis...
Currently there is ambiguity about the space group of the first high pressure phase of Z...
The phase relations and equation of state of ZrO2 were investigated up to 100 GPa by means of in sit...
Angular-dispersive x-ray in situ powder-diffraction experiments have been performed on pure zirconia...