Desification and grain growth of porous alumina compacts during various high-temperature processes were investigated. Experimental data were obtained for densification and grain growth of alumina powder during hot pressing. A set of constitutive equations was proposed based on the constitutive equations was proposed based on the constitutive equations by Helle et Al.(1) for hydrostatic response and by Rahaman et al.(2) for deviatoric response. Theoretical results from the proposed constitutive equations were compared with various experimental data for alumina powder compacts in the literature, including pressureless sintering, sinter forging, and hot pressing. The proposed model well predicts the densification and grain growth of alumina co...
Commonly used constitutive laws for crystalline and viscous materials have been compared to predict ...
This Thesis describes a study of the compaction and the sintering of ceramic powders within the cont...
The densi?cation behaviour of aluminium, iron and alumina powders under cold isostatic pressing (CIP...
Finite element techniques were used to study the densification behavior and residual stress developm...
Densification and deformation of alumina powder under hot pressing and hot isostatic pressing were i...
In advanced ceramic powder compaction technology, pressure during compaction is the most important f...
International audienceThe identification of densification mechanism during hot uniaxial pressing is ...
In the manufacture of ceramic components, near-net-shape parts are commonly formed by uniaxially pre...
A physics-based constitutive model of porous materials is proposed to enhance the accuracy of numeri...
A discontinuous hot forging approach was employed in this study in order to extract the temperature ...
International audienceThis paper investigates densification and grain growth evolutions during gas p...
The compaction of spray-dried alumina, containing 3 wt.% organic binders (PVA or PEG), is analyzed t...
Powder metallurgy, or P/M, is a process for forming metal parts by compacting and heating metal powd...
The sintering of alumina has been studied with a view to produce high quality experimental data to v...
In this thesis, alumina ceramics with an initial grain size of 7um were sintered to examine the cons...
Commonly used constitutive laws for crystalline and viscous materials have been compared to predict ...
This Thesis describes a study of the compaction and the sintering of ceramic powders within the cont...
The densi?cation behaviour of aluminium, iron and alumina powders under cold isostatic pressing (CIP...
Finite element techniques were used to study the densification behavior and residual stress developm...
Densification and deformation of alumina powder under hot pressing and hot isostatic pressing were i...
In advanced ceramic powder compaction technology, pressure during compaction is the most important f...
International audienceThe identification of densification mechanism during hot uniaxial pressing is ...
In the manufacture of ceramic components, near-net-shape parts are commonly formed by uniaxially pre...
A physics-based constitutive model of porous materials is proposed to enhance the accuracy of numeri...
A discontinuous hot forging approach was employed in this study in order to extract the temperature ...
International audienceThis paper investigates densification and grain growth evolutions during gas p...
The compaction of spray-dried alumina, containing 3 wt.% organic binders (PVA or PEG), is analyzed t...
Powder metallurgy, or P/M, is a process for forming metal parts by compacting and heating metal powd...
The sintering of alumina has been studied with a view to produce high quality experimental data to v...
In this thesis, alumina ceramics with an initial grain size of 7um were sintered to examine the cons...
Commonly used constitutive laws for crystalline and viscous materials have been compared to predict ...
This Thesis describes a study of the compaction and the sintering of ceramic powders within the cont...
The densi?cation behaviour of aluminium, iron and alumina powders under cold isostatic pressing (CIP...