2015
DOI: 10.1007/s10853-015-9504-0
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Investigation of liquid oxide interactions with refractory substrates via sessile drop method

Abstract: International audienceThe wetting of refractory substrates by oxide alloys has been investigated using a high-temperature sessile drop bench. The aim of this study was to select the best crucible material for directional solidification processes such as the Bridgman, edge-defined film-fed growth or micro-pulling down methods. Contact angles and surface tension were determined via high-resolution imaging. The O2 partial pressure in the furnace atmosphere was also measured. Alumina and a eutectic ceramic called … Show more

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Cited by 4 publications
(2 citation statements)
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“…In contrast, smaller drops can cause errors due to evaporation and the interference of contact line tension, triggering deviations in measurements [ 61 ]. Further, the atmospheric conditions play a substantial role in the control of contact angles, where the partial pressure of oxygen influences the equilibrium and uniformity of the formed drop [ 62 ]. Besides, the homogeneity of the chemical composition of the surface may affect droplet symmetry [ 63 , 64 ].…”
Section: Resultsmentioning
confidence: 99%
“…In contrast, smaller drops can cause errors due to evaporation and the interference of contact line tension, triggering deviations in measurements [ 61 ]. Further, the atmospheric conditions play a substantial role in the control of contact angles, where the partial pressure of oxygen influences the equilibrium and uniformity of the formed drop [ 62 ]. Besides, the homogeneity of the chemical composition of the surface may affect droplet symmetry [ 63 , 64 ].…”
Section: Resultsmentioning
confidence: 99%
“…Molten Al 2 O 3 has high surface tension σ=0.65N/m and high viscosity μ=0.057Pa·s . The wetting angle, measured on an iridium substrate by using the sessile drop technique, is θ=30 . The densities of the liquid and the solid phases are ρL=3000kg/m3and ρS=3900kg/m3.…”
Section: Methodsmentioning
confidence: 99%