Y-TZP powders were prepared either by calcination in air or crystallization under hydrothermal conditions of a hydrous gel, obtained by coprecipitation. Differences in powder properties, green compact structure and sinterability were examined. Crystallization under hydrothermal conditions occurs at temperatures as low as 190°C in the presence of ammonia. The hydrothermally treated powders are composed of soft agglomerates, that collapse under very low pressures, resulting in green bodies with high densities and small pore radii. The sinterability is greatly improved by the hydrothermal treatment and allowed the production of dense, nanostructured Y-TZP by free sintering at 1050°C
Synthetic process of making yttria stabilized sub-micron zirconia powder was studied by co-precipita...
In this study, the combination of hydrothermal technique and seed-doping method was conducted to coo...
A chemical processing technique for the fabrication of nanopowders has been developed. The route is ...
Y-TZP powders were prepared either by calcination in air or crystallization under hydrothermal condi...
Two wet chemical preparation methods are described for yttria-doped tetragonal zirconia powders. Bot...
Two wet chemical preparation methods are described for yttria-doped tetragonal zirconia powders. Bot...
[[abstract]]Ultrafine 5.5 mol% CeO2—2 mol% YO1.5ZrO2 powders with controllable crystallite size were...
In this paper, nano-sized lead zirconate-titanate (PZT) powders were synthesized without using any e...
Nanocrystalline 3 mol.-% yttria doped tetragonal zirconia polycrstal was synthesised by coprecipitat...
Two commercial zirconia powders with 3 mol% of yttria (TZ3YE and TZ3YS, labeled as ZE and ZS, respec...
At 200 degrees C, 8 mol% yttria doped zirconia (8YSZ) nanocrystals were synthesized through a hydrot...
Mixtures of powders essentially differing in their particle morphology and size were applied to prep...
Zinc oxide (ZnO) powders were synthesized by the hydrothermal method at 160-280ºC for 6-24 hours, un...
Nanosize 3 mol.-% yttria tetragonal zirconia (3Y-TZP) powder was synthesised by coprecipitation meth...
Abstract8 mol% yttria stabilized zirconia (8YSZ) nanopowders have been synthesized via a co-precipit...
Synthetic process of making yttria stabilized sub-micron zirconia powder was studied by co-precipita...
In this study, the combination of hydrothermal technique and seed-doping method was conducted to coo...
A chemical processing technique for the fabrication of nanopowders has been developed. The route is ...
Y-TZP powders were prepared either by calcination in air or crystallization under hydrothermal condi...
Two wet chemical preparation methods are described for yttria-doped tetragonal zirconia powders. Bot...
Two wet chemical preparation methods are described for yttria-doped tetragonal zirconia powders. Bot...
[[abstract]]Ultrafine 5.5 mol% CeO2—2 mol% YO1.5ZrO2 powders with controllable crystallite size were...
In this paper, nano-sized lead zirconate-titanate (PZT) powders were synthesized without using any e...
Nanocrystalline 3 mol.-% yttria doped tetragonal zirconia polycrstal was synthesised by coprecipitat...
Two commercial zirconia powders with 3 mol% of yttria (TZ3YE and TZ3YS, labeled as ZE and ZS, respec...
At 200 degrees C, 8 mol% yttria doped zirconia (8YSZ) nanocrystals were synthesized through a hydrot...
Mixtures of powders essentially differing in their particle morphology and size were applied to prep...
Zinc oxide (ZnO) powders were synthesized by the hydrothermal method at 160-280ºC for 6-24 hours, un...
Nanosize 3 mol.-% yttria tetragonal zirconia (3Y-TZP) powder was synthesised by coprecipitation meth...
Abstract8 mol% yttria stabilized zirconia (8YSZ) nanopowders have been synthesized via a co-precipit...
Synthetic process of making yttria stabilized sub-micron zirconia powder was studied by co-precipita...
In this study, the combination of hydrothermal technique and seed-doping method was conducted to coo...
A chemical processing technique for the fabrication of nanopowders has been developed. The route is ...