2016
DOI: 10.4322/2176-1523.1045
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SIMPLIFICATION OF THE THERMODYNAMIC DESCRIPTION OF THE Ti-Si SYSTEM

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Cited by 4 publications
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“…The smooth, straight, or irregular boundaries between yeite, wenjiite, and zhiqinite suggest that the original melt may have decomposed into mutually immiscible melts or crystallized into the three coexisting phases. However, examination of the phase diagram for the Ti-Si Si binary [53] suggests that the situation was more complex (Figure 17). This binary is separated into two subsystems by a thermal divide at Ti 3 Si 2 ; the assemblage TiSi+TiSi 2 appears (crystallizes) at a eutectic point (1743 K) on the Si side of the divide, while wenjiite crystallizes from melts on the Ti side of the divide from 2400 K to a eutectic (L → Ti + Ti 5 Si 3 ) at 1613 K. There is no point at which TiSi coexists with Ti 5 Si 3 .…”
Section: Discussionmentioning
confidence: 99%
“…The smooth, straight, or irregular boundaries between yeite, wenjiite, and zhiqinite suggest that the original melt may have decomposed into mutually immiscible melts or crystallized into the three coexisting phases. However, examination of the phase diagram for the Ti-Si Si binary [53] suggests that the situation was more complex (Figure 17). This binary is separated into two subsystems by a thermal divide at Ti 3 Si 2 ; the assemblage TiSi+TiSi 2 appears (crystallizes) at a eutectic point (1743 K) on the Si side of the divide, while wenjiite crystallizes from melts on the Ti side of the divide from 2400 K to a eutectic (L → Ti + Ti 5 Si 3 ) at 1613 K. There is no point at which TiSi coexists with Ti 5 Si 3 .…”
Section: Discussionmentioning
confidence: 99%