We examine the apparent size of the core and shell as a function of cooling rate in core–shell particles of the metastable monotectic alloy Co-50 at% Cu, finding that the volume fraction of the core systematically increases with cooling rate and hence undercooling. A model for this variation is proposed. A Monte-Carlo simulation is used to correct for sectioning effects allowing the true core:shell volume ratio to be estimated. From this, and the observation of a second, spinodal, episode of liquid phase separation we are able to estimate the undercooling at solidification. This permits a calculation of the time available following liquid phase separation for the migration giving rise to the observed core–shell structure to occur and hence ...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Phase-change materials, such as meta-stable undercooled (supercooled) liquids, have been widely reco...
Experiments were conducted on metal droplet undercooling, using Sn-25wt%Pb and Ni-34wt%Sn alloys. To...
The liquid phase separation behaviour of metastable monotectic Co–Cu alloys was investigated as a fu...
The metastable monotectic alloy Co-Cu has been subject to rapid solidification under reduced gravity...
Cu-50 at% Co and Cu-68.5 at% Co metastable monotectic Cu–Co alloys have been rapidly solidified in a...
Two Co – Cu alloys were studied by drop tube processing technique in a view of investigating ...
Metastable monotectic Cu – 50 at. % Co alloy produced by arc melting has been processed under micro ...
© 2018, Pleiades Publishing, Inc. The process of homogeneous crystal nucleation has been considered ...
The solidification behavior of an atomized droplet of a metastable, immiscible Cu–Fe alloy has been ...
The rapid solidification of the Ag − 40at %Cu alloys was studied by the drop tube technique, aiming ...
The theory of nucleation and evolution of particles in supercooled and supersaturated liquids is dev...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Arc melted and drop tube processed Cu – 68.5 at. % Co alloy has been subjected to differential therm...
International audienceThis paper reports on rapid solidification of Al-Cu alloys. A heterogeneous nu...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Phase-change materials, such as meta-stable undercooled (supercooled) liquids, have been widely reco...
Experiments were conducted on metal droplet undercooling, using Sn-25wt%Pb and Ni-34wt%Sn alloys. To...
The liquid phase separation behaviour of metastable monotectic Co–Cu alloys was investigated as a fu...
The metastable monotectic alloy Co-Cu has been subject to rapid solidification under reduced gravity...
Cu-50 at% Co and Cu-68.5 at% Co metastable monotectic Cu–Co alloys have been rapidly solidified in a...
Two Co – Cu alloys were studied by drop tube processing technique in a view of investigating ...
Metastable monotectic Cu – 50 at. % Co alloy produced by arc melting has been processed under micro ...
© 2018, Pleiades Publishing, Inc. The process of homogeneous crystal nucleation has been considered ...
The solidification behavior of an atomized droplet of a metastable, immiscible Cu–Fe alloy has been ...
The rapid solidification of the Ag − 40at %Cu alloys was studied by the drop tube technique, aiming ...
The theory of nucleation and evolution of particles in supercooled and supersaturated liquids is dev...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Arc melted and drop tube processed Cu – 68.5 at. % Co alloy has been subjected to differential therm...
International audienceThis paper reports on rapid solidification of Al-Cu alloys. A heterogeneous nu...
Classical nucleation theory describes the formation of the first solids from supercooled liquids and...
Phase-change materials, such as meta-stable undercooled (supercooled) liquids, have been widely reco...
Experiments were conducted on metal droplet undercooling, using Sn-25wt%Pb and Ni-34wt%Sn alloys. To...