cited By 6International audienceIn this work, we studied the aptitude to sintering green bodies using γ-Al2O3 transition alumina as raw powder. We focused on the influence of the heating rate on densification and microstructural evolution. Phase transformations from transition alumina γ → δ → θ → α-Al2O3 were studied by in situ X-rays diffraction from the ambient to 1200 °C. XRD patterns revealed coexistence of various phase transformations during the heating cycle. DTA and dilatometry results showed that low heating rate leads to a significant reduction of the temperature of the α-Al2O3 alumina formation. Around 1190, 1217 and 1240 °C were found when using 5, 10 and 20 °C/min of heating rate, respectively. The activation energy for θ-Al2O3...
Two parameters were studied upon the thermoluminescence (TL) properties and the sintering behaviour ...
AbstractIn this work, we studied the aptitude to sintering green bodies using γ-Al2O3 transition alu...
Consolidation of transition nanoscaled alumina (γ, δ, θ, and α-phase) at P=500 MPa and T=1500oC, gav...
AbstractIn this work, we studied the aptitude to sintering green bodies using γ-Al2O3 transition alu...
International audienceDeagglomeration of a nanocrystalline transition alumina performed using differ...
The master sintering curve (MSC), in which the sintered density is a unique function of the integral...
The master sintering curve (MSC), in which the sintered density is a unique function of the integral...
The sintering of ultrafine γ-Al2O3 powder (particle size ∼10-20 nm) prepared by an inert gas condens...
AbstractSintering behaviors of commercially available alumina powders were investigated using consta...
Abstract Sintering behaviors of commercially available alumina powders were investigated using const...
Conditions of green body preparation and consequently the conditions of sintering are prerequisite f...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
By following the densification kinetics of nanocrystalline γ alumina and corresponding microstructur...
The effect of forming method (cold isostatic pressing and slip casting) on particle packing and the ...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
Two parameters were studied upon the thermoluminescence (TL) properties and the sintering behaviour ...
AbstractIn this work, we studied the aptitude to sintering green bodies using γ-Al2O3 transition alu...
Consolidation of transition nanoscaled alumina (γ, δ, θ, and α-phase) at P=500 MPa and T=1500oC, gav...
AbstractIn this work, we studied the aptitude to sintering green bodies using γ-Al2O3 transition alu...
International audienceDeagglomeration of a nanocrystalline transition alumina performed using differ...
The master sintering curve (MSC), in which the sintered density is a unique function of the integral...
The master sintering curve (MSC), in which the sintered density is a unique function of the integral...
The sintering of ultrafine γ-Al2O3 powder (particle size ∼10-20 nm) prepared by an inert gas condens...
AbstractSintering behaviors of commercially available alumina powders were investigated using consta...
Abstract Sintering behaviors of commercially available alumina powders were investigated using const...
Conditions of green body preparation and consequently the conditions of sintering are prerequisite f...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
By following the densification kinetics of nanocrystalline γ alumina and corresponding microstructur...
The effect of forming method (cold isostatic pressing and slip casting) on particle packing and the ...
In this study, the feasibility of alumina phase transition enhancement by mechanical activation was ...
Two parameters were studied upon the thermoluminescence (TL) properties and the sintering behaviour ...
AbstractIn this work, we studied the aptitude to sintering green bodies using γ-Al2O3 transition alu...
Consolidation of transition nanoscaled alumina (γ, δ, θ, and α-phase) at P=500 MPa and T=1500oC, gav...