The response of porous Al2O3 to nanoindentation was investigated at microscopic scales (nm-mu m) and under ultra-low loads from 5 to 90 mN with special attention paid to the dependence of the load-depth behaviour to sample porosity. It was found that the load-depth curves manifest local responses typical of the various porous structures investigated. This is particularly clear for the residual deformation after load removal. Similarly, the limited mean pressure of the sample containing small grains and interconnected pores is consistent with its porous structure. By comparison, the samples with larger grain size and various porous structures exhibit higher pressures and smaller residual deformations that can be attributed to the mechanical ...
To understand how high-strain rate, flyer-plate impact affects the nanohardness of a coarse (similar...
In order to understand the mechanical behaviour of Al2O3 inverse opals, nanoindentation techniques h...
Here we report the modelling of the nanoindentation behaviour of 1-5 wt% MgO doped alumina ceramics....
The response of porous Al2O3 to nanoindentation was investigated at microscopic scales (nm-mu m) and...
Contact pressure of porous Al2O3 probed by nanoindentation was investigated by dimensional analysis ...
The mechanical properties of a-Al2O3(0001) have been investigated by using the technique of nanoinde...
The present experiments were focused on nanoindentation behaviour and the attendant ``micro-pop-in''...
The knowledge of creep is crucial in predicting different phenomena such as reservoir subsidence ass...
Anodising aluminium in an acid electrolyte results in a porous alumina film. The pores are uniformly...
In this study, the mechanical properties, such as the modulus, hardness, of anodic aluminum oxide (A...
Nanoindentations at loads of 20-200 mN were performed on submicrometer sintered alumina ceramics of ...
Advanced membrane concepts are based on thin layers that require a mechanically robust porous substr...
Anodic alumina has been used widely for corrosion protection of aluminum surfaces or as a dielectric...
In the current study, the experimental results on the nanoindentation response of both as prepared a...
This work evaluates the nanohardness of a single alumina grain for a coarse grain alumina ceramic of...
To understand how high-strain rate, flyer-plate impact affects the nanohardness of a coarse (similar...
In order to understand the mechanical behaviour of Al2O3 inverse opals, nanoindentation techniques h...
Here we report the modelling of the nanoindentation behaviour of 1-5 wt% MgO doped alumina ceramics....
The response of porous Al2O3 to nanoindentation was investigated at microscopic scales (nm-mu m) and...
Contact pressure of porous Al2O3 probed by nanoindentation was investigated by dimensional analysis ...
The mechanical properties of a-Al2O3(0001) have been investigated by using the technique of nanoinde...
The present experiments were focused on nanoindentation behaviour and the attendant ``micro-pop-in''...
The knowledge of creep is crucial in predicting different phenomena such as reservoir subsidence ass...
Anodising aluminium in an acid electrolyte results in a porous alumina film. The pores are uniformly...
In this study, the mechanical properties, such as the modulus, hardness, of anodic aluminum oxide (A...
Nanoindentations at loads of 20-200 mN were performed on submicrometer sintered alumina ceramics of ...
Advanced membrane concepts are based on thin layers that require a mechanically robust porous substr...
Anodic alumina has been used widely for corrosion protection of aluminum surfaces or as a dielectric...
In the current study, the experimental results on the nanoindentation response of both as prepared a...
This work evaluates the nanohardness of a single alumina grain for a coarse grain alumina ceramic of...
To understand how high-strain rate, flyer-plate impact affects the nanohardness of a coarse (similar...
In order to understand the mechanical behaviour of Al2O3 inverse opals, nanoindentation techniques h...
Here we report the modelling of the nanoindentation behaviour of 1-5 wt% MgO doped alumina ceramics....