The effects produced by annealing Y2O3 nanopowders on their spark plasma sintering (SPS) behavior are systematically investigated in this work. It is found that the annealed powders display higher sinterability with respect to the as-received ones. Indeed, the maximum densification level reached from pristine powders is about 97.5%, whereas density decreases when further increasing either the sintering temperature or the dwell time. In contrast, the density of SPS products obtained from pretreated powder monotonically increases with temperature and processing time, thus leading to fully dense materials in 30 min at 1050°C and 60 MPa. Correspondingly, it is found that the annealing treatment markedly inhibits grain coarsening during SPS...
Cation doping of Y2O3 is an established approach for tailoring densification and grain growth during...
Highly compact green bodies are usually required to fabricate transparent or translucent polycrystal...
Spark plasma sintering (SPS) was used to consolidate a Fe–16Cr–3Al (wt.%) powder that was mechanical...
The effects produced by annealing Y2O3 nanopowders on their spark plasma sintering (SPS) behavior ar...
Dense yttria ceramics were prepared by Spark Plasma Sintering of a nanopowder synthesized using a PE...
Nanocrystalline Y2O3 powders with 18nm crystallite size were sintered using spark plasma sintering (...
Nanocrystalline (nc) Y2O3 powders with 18nmcrystallite size were sintered using spark plasma sinteri...
Advanced ceramics materials like yttrium oxide (Y$_{2}$O$_{3}$) are of high interest for critical ma...
Densification of nanocrystalline cubic yttria (nc-Y2O3) powder, with 18 nm crystal size and 1 wt% Li...
Y2O3 ceramics have special chemical and physical properties such as high resistance to halogen-plasm...
Highly sinterable Y2O3 nano-powder with low degree of agglomeration was synthesized by using a spray...
Rapid densification of yttria (Y₂O₃) ceramics without sintering aids via spark plasma sintering at r...
Multiphase (MP) monoclinic and cubic Y2O3 nanoparticles, 40 nm in diameter, were densified by spark ...
Using Spark Plasma Sintering it is possible to produce polycrystalline ceramics of very fine microst...
The paper reports the effect of starting powder size and sintering temperature on the grain refining...
Cation doping of Y2O3 is an established approach for tailoring densification and grain growth during...
Highly compact green bodies are usually required to fabricate transparent or translucent polycrystal...
Spark plasma sintering (SPS) was used to consolidate a Fe–16Cr–3Al (wt.%) powder that was mechanical...
The effects produced by annealing Y2O3 nanopowders on their spark plasma sintering (SPS) behavior ar...
Dense yttria ceramics were prepared by Spark Plasma Sintering of a nanopowder synthesized using a PE...
Nanocrystalline Y2O3 powders with 18nm crystallite size were sintered using spark plasma sintering (...
Nanocrystalline (nc) Y2O3 powders with 18nmcrystallite size were sintered using spark plasma sinteri...
Advanced ceramics materials like yttrium oxide (Y$_{2}$O$_{3}$) are of high interest for critical ma...
Densification of nanocrystalline cubic yttria (nc-Y2O3) powder, with 18 nm crystal size and 1 wt% Li...
Y2O3 ceramics have special chemical and physical properties such as high resistance to halogen-plasm...
Highly sinterable Y2O3 nano-powder with low degree of agglomeration was synthesized by using a spray...
Rapid densification of yttria (Y₂O₃) ceramics without sintering aids via spark plasma sintering at r...
Multiphase (MP) monoclinic and cubic Y2O3 nanoparticles, 40 nm in diameter, were densified by spark ...
Using Spark Plasma Sintering it is possible to produce polycrystalline ceramics of very fine microst...
The paper reports the effect of starting powder size and sintering temperature on the grain refining...
Cation doping of Y2O3 is an established approach for tailoring densification and grain growth during...
Highly compact green bodies are usually required to fabricate transparent or translucent polycrystal...
Spark plasma sintering (SPS) was used to consolidate a Fe–16Cr–3Al (wt.%) powder that was mechanical...