Arc melted and drop tube processed Cu – 68.5 at. % Co alloy has been subjected to differential thermal analysis (DTA). The liquidus temperature determined from the DTA curves in the arc melt sample (1664 K) was found to be close to phase diagram estimate of 1662 K. In contrast as a result of liquid phase separation in the drop tube samples, the values obtained in the powders were much lower mainly because the compositions of the demixed phases vary from that of the parent melt. The liquidus temperature of the 850 + μm powders was 1632 K while that of the < 38 μm sieve size powder was 1616 K. This variance is due to the asymmetric nature of the metastable phase diagram of the system
A combination of differential thermal analysis (DTA) and drop-quench experiments were conducted on t...
While cooling beyond a certain temperature limit (TSEP) the Cu- Zr-Ag ternary melt of the separated...
The Co-Cu system is analyzed in the region of metastable miscibility gap with separation of the unde...
Metastable monotectic Cu – 50 at. % Co alloy produced by arc melting has been processed under micro ...
Arc melted and drop tube processed Cu – 68.5 at. % Co alloy has been subjected to differential therm...
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 ...
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...
We examine the apparent size of the core and shell as a function of cooling rate in core–shell parti...
AbstractThe influence of heat treatment on the phase decomposition and the grain size of Co–10at% Cu...
Cu-Co-Fe alloys undercooled below a certain temperature display demixing of the liquid, followed by ...
The rapid solidification of the Ag − 40at %Cu alloys was studied by the drop tube technique, aiming ...
A combination of differential thermal analysis (DTA) and drop-quench experiments were conducted on t...
The Co–Cu system is analyzed in the region of the metastable miscibility gap with separation of the ...
A combination of differential thermal analysis (DTA) and drop-quench experiments were conducted on t...
While cooling beyond a certain temperature limit (TSEP) the Cu- Zr-Ag ternary melt of the separated...
The Co-Cu system is analyzed in the region of metastable miscibility gap with separation of the unde...
Metastable monotectic Cu – 50 at. % Co alloy produced by arc melting has been processed under micro ...
Arc melted and drop tube processed Cu – 68.5 at. % Co alloy has been subjected to differential therm...
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 ...
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...
We examine the apparent size of the core and shell as a function of cooling rate in core–shell parti...
AbstractThe influence of heat treatment on the phase decomposition and the grain size of Co–10at% Cu...
Cu-Co-Fe alloys undercooled below a certain temperature display demixing of the liquid, followed by ...
The rapid solidification of the Ag − 40at %Cu alloys was studied by the drop tube technique, aiming ...
A combination of differential thermal analysis (DTA) and drop-quench experiments were conducted on t...
The Co–Cu system is analyzed in the region of the metastable miscibility gap with separation of the ...
A combination of differential thermal analysis (DTA) and drop-quench experiments were conducted on t...
While cooling beyond a certain temperature limit (TSEP) the Cu- Zr-Ag ternary melt of the separated...
The Co-Cu system is analyzed in the region of metastable miscibility gap with separation of the unde...