The techniques of electromagnetic levitation, drop-tube processing and atomization are used to study containerless solidification of the Cu-Ni and Fe-Ni systems. Microstructure-selection maps are developed for the case of droplet solidification where droplet diameter and undercooling are the process parameters. The microstructure varies systematically with undercooling and composition, such that grain-refined microstructures are produced at both low and high undercoolings and dendritic microstructures are produced at intermediate undercoolings. The results are analyzed within a recently developed model for grain refinement which is based on the fragmentation of primary dendrites. The role of cooling rate in determining whether the microstru...
Containerless solidification using electromagnetic levitator, gas atomization and an instrumented dr...
International audienceContainerless solidification using electromagnetic levitator (EML), gas atomiz...
International audienceAl-Cu alloys of (nominal) compositions 4.3 wt%Cu, 5 wt%Cu, 10 wt%Cu and 1 7 wt...
Ni–Cu droplets were processed by electromagnetic levitation, in a drop-tube and by atomization. The ...
Fe–Ni droplets (Ni content 0–30 at.%) were containerlessly processed by electromagnetic levitation, ...
For Cu-Ni alloy droplets processed by containerless solidification under levitation, the crystallogr...
Inert-gas atomization, using nitrogen as the atomizing medium, has been used to process a series of ...
Undercooling experiments have been performed on refractory materials by processing in a high drop-tu...
Near eutectic Al-Cu droplets were rapidly solidified by Impulse Atomization. A wide range of microst...
Morphology and size of dendritic microstructures sensitively depend on the solidification conditions...
The magnetic Fe–6.5 wt% Si powder was produced by gas atomization and its microstructure was also in...
A microsegregation solidification model has been extended for an individual droplet falling through ...
Conference on Cutting Edge of Studies in Inclusions and Precipitates Behavior Related to Microstruct...
International audienceThe solidification of an atomized Al-10 wt.%Cu 250 μm diameter droplet is stud...
Undercooling is identified a physical parameter of outstanding importance in order to select the sol...
Containerless solidification using electromagnetic levitator, gas atomization and an instrumented dr...
International audienceContainerless solidification using electromagnetic levitator (EML), gas atomiz...
International audienceAl-Cu alloys of (nominal) compositions 4.3 wt%Cu, 5 wt%Cu, 10 wt%Cu and 1 7 wt...
Ni–Cu droplets were processed by electromagnetic levitation, in a drop-tube and by atomization. The ...
Fe–Ni droplets (Ni content 0–30 at.%) were containerlessly processed by electromagnetic levitation, ...
For Cu-Ni alloy droplets processed by containerless solidification under levitation, the crystallogr...
Inert-gas atomization, using nitrogen as the atomizing medium, has been used to process a series of ...
Undercooling experiments have been performed on refractory materials by processing in a high drop-tu...
Near eutectic Al-Cu droplets were rapidly solidified by Impulse Atomization. A wide range of microst...
Morphology and size of dendritic microstructures sensitively depend on the solidification conditions...
The magnetic Fe–6.5 wt% Si powder was produced by gas atomization and its microstructure was also in...
A microsegregation solidification model has been extended for an individual droplet falling through ...
Conference on Cutting Edge of Studies in Inclusions and Precipitates Behavior Related to Microstruct...
International audienceThe solidification of an atomized Al-10 wt.%Cu 250 μm diameter droplet is stud...
Undercooling is identified a physical parameter of outstanding importance in order to select the sol...
Containerless solidification using electromagnetic levitator, gas atomization and an instrumented dr...
International audienceContainerless solidification using electromagnetic levitator (EML), gas atomiz...
International audienceAl-Cu alloys of (nominal) compositions 4.3 wt%Cu, 5 wt%Cu, 10 wt%Cu and 1 7 wt...