New data on the miscibility gap in the liquid state in both O-U and O-
U-Zr phase diagrams are reported. Mixtures are melted by electron bomb
ardment. Tie-lines are determined in the O-U miscibility gap at 3090 I
C as well as in the O-U-Zr ternary system at 3223 K. 'Metallic' and 'o
xide' liquids are immiscible in a large range of temperature and compo
sition in both systems. The miscibility gap extent is extrapolated by
thermodynamic calculations, The quenched microstructures of the differ
ent liquid phases are described and interpreted using a solidification
path calculation. For the (O,U,Zr) alloys entering the miscibility ga
p, the minor oxide liquid phase is in the form of droplets in the meta
llic parent liquid. The droplets seem to segregate at the ingot surfac
e. This leads to a layer formation in the case of the O-U system when
there is the greatest difference between the two liquid compositions.
(C) 1998 Elsevier Science B.V.