International audienceSurface‐oxidized molybdenum nanopowders are compacted by spark plasma sintering (SPS). The oxide impurity behavior is analyzed under various sintering temperatures. The densification mechanism of the nanopowders with a melted oxide phase is identified in situ by regression analysis of the experimental data on the temperature‐dependent porosity change and on the SPS multistep pressure dilatometry. To increase the density of the compacted pellets, the nanopowders with the oxide phase are consolidated by SPS using the two in situ oxide removal methods: carbothermic reduction and particle surface cleaning by the electric current flow through the powders. The advantages and disadvantages of these methods in terms of the de...
Spark plasma sintering (SPS) currently used for rapid and full densification of ceramic particles as...
This part is focused on the effect of surface bound water on the densification behavior and defect s...
This paper reviews the influence of particle size distribution, agglomerates, rearrangement, sinteri...
International audienceSurface‐oxidized molybdenum nanopowders are compacted by spark plasma sinterin...
International audienceMo nanopowders are synthesized by ball milling and the following hydrogen redu...
The sintering behavior of molybdenum (Mo) nanopowder was investigated in comparison to that of comme...
Compared with commercial micro-sized molybdenum powder, the sintering of molybdenum nanopowder fabri...
Spark plasma sintering (SPS) has clear advantages of fast densification and lower grain growth compa...
The dissipated electric power in oxide powder compacts, subjected to flash sintering, is several hun...
The dissipated electric power in oxide powder compacts, subjected to flash sintering, is several hun...
Spark plasma sintering is a hot pressing technique where rapid heating by dc electric pulses is used...
It has been found difficult to fully densify some mechanically milled pure metal powders by spark pl...
The aim of this work is to investigate the use of Spark Plasma Sintering (SPS) as a rapid and effici...
The aim of this work is to investigate the use of Spark Plasma Sintering (SPS) as a rapid and effici...
Spark plasma sintering (SPS) is a convenient and rapid means of producing dense ceramic compacts. Ho...
Spark plasma sintering (SPS) currently used for rapid and full densification of ceramic particles as...
This part is focused on the effect of surface bound water on the densification behavior and defect s...
This paper reviews the influence of particle size distribution, agglomerates, rearrangement, sinteri...
International audienceSurface‐oxidized molybdenum nanopowders are compacted by spark plasma sinterin...
International audienceMo nanopowders are synthesized by ball milling and the following hydrogen redu...
The sintering behavior of molybdenum (Mo) nanopowder was investigated in comparison to that of comme...
Compared with commercial micro-sized molybdenum powder, the sintering of molybdenum nanopowder fabri...
Spark plasma sintering (SPS) has clear advantages of fast densification and lower grain growth compa...
The dissipated electric power in oxide powder compacts, subjected to flash sintering, is several hun...
The dissipated electric power in oxide powder compacts, subjected to flash sintering, is several hun...
Spark plasma sintering is a hot pressing technique where rapid heating by dc electric pulses is used...
It has been found difficult to fully densify some mechanically milled pure metal powders by spark pl...
The aim of this work is to investigate the use of Spark Plasma Sintering (SPS) as a rapid and effici...
The aim of this work is to investigate the use of Spark Plasma Sintering (SPS) as a rapid and effici...
Spark plasma sintering (SPS) is a convenient and rapid means of producing dense ceramic compacts. Ho...
Spark plasma sintering (SPS) currently used for rapid and full densification of ceramic particles as...
This part is focused on the effect of surface bound water on the densification behavior and defect s...
This paper reviews the influence of particle size distribution, agglomerates, rearrangement, sinteri...