Abstract
The surface tensions of liquid ternary Ni-5%Cu-5%Fe, quaternary Ni-5%Cu-5%Fe-5%Sn and quinary Ni-5%Cu-5%Fe-5%Sn-5%Ge alloys were determined as a function of temperature by the electromagnetic levitation oscillating drop method. The maximum undercoolings obtained in the experiments are 272 (0.15T L), 349 (0.21T L) and 363K (0.22T L), respectively. For all the three alloys, the surface tension decreases linearly with the rise of temperature. The surface tension values are 1.799, 1.546 and 1.357N/m at their liquidus temperatures of 1719, 1644 and 1641K. Their temperature coefficients are 4.97210 -4, 5.05710 4 and 5.38510 4N/m/K. It is revealed that Sn and Ge are much more efficient than Cu and Fe in reducing the surface tension of Ni-based alloys. The addition of Sn can significantly enlarge the maximum undercooling at the same experimental condition. The viscosity of the three undercooled liquid alloys was also derived from the surface tension data.
| Original language | English |
|---|---|
| Pages (from-to) | 428-435 |
| Number of pages | 8 |
| Journal | Philosophical Magazine Letters |
| Volume | 92 |
| Issue number | 9 |
| DOIs | |
| State | Published - 1 Sep 2012 |
Keywords
- multicomponent alloys
- surface tension
- undercooling
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