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activated sintering
A sintering method for the rapid consolidation of a variety of engineering materials in short time frames (seconds to minutes) is presented with a focus on the manufacturing potential of this novel plasma activated sintering (PAS) process.
      
Modification of inorganic powders with high-pressure shock-wave loading is of interest for shock-activated sintering, material synthesis, shock-enhanced catalytic activity, dynamic compaction, and shock-enhanced solid-state reactivity.
      
Accelerating densification above 2130°C was attributed to nonstoichiometric volatilization, leaving carbon behind to facilitate activated sintering.
      
Structural and magnetic properties of FeCr2S4 spinel prepared by field-activated sintering and conventional solid-state synthesi
      
We report on the fast preparation of the ternary magnetic semiconductor spinel FeCr2S4 using the Field-Activated Sintering Technique (FAST).
      
Observation of sample sintering temperature by the plasma activated sintering (PAS) furnace
      
Microstructure inhomogeneity in Al2O3 sintered bodies formed during the plasma-activated sintering process
      
Some crystal-chemical relationships in the activated sintering of highly refractory oxides in the solid phase
      
Methods of activated sintering based on the use of chlorine (review)
      
The kinetics of the activated sintering of titanium carbide was investigated.
      
Activated sintering of tungsten with small additions of nickel
      
Activated sintering of tungsten with palladium additions
      
Activated sintering of tungsten and molybdenum powders
      
It is probable that the dislocation mechanism is chiefly responsible for densification during activated sintering.
      
Activated sintering of tungsten with nickel additions
      
Activated sintering of rhenium with palladium additions
      
Effect of heating rate on the kinetics of activated sintering of tungsten and its properties
      
1.Heating rate is one of the most important technological parameters affecting process kinetics in the nickel-activated sintering of tungsten.
      
Activated sintering was found to be exhibited by powder containing, in the starting condition, as little as 0.3 wt.% of iron.
      
Production of porous TiC material by the method of activated sintering in a vacuum
      
 

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