Abstract
The equilibrated grain boundary groove shapes of a solid Al solution in equilibrium with Al-Cu-Ag liquid were observed from a quenched sample using a radial heat flow apparatus. The Gibbs-Thomson coefficient, solid-liquid interfacial energy, and grain boundary energy of the solid Al solution were determined from the observed grain boundary groove shapes. The thermal conductivity of the solid phase for Al-16.42 at.% Ag-4.97 at.% Cu and Al-16.57 at.% Ag-11.87 at.% Cu alloys and the thermal conductivity ratio of the liquid phase to the solid phase for Al-16.57 at.% Ag-11.87 at.% Cu alloy at the melting temperature were also measured with a radial heat flow apparatus and a Bridgman-type growth apparatus, respectively.
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Keşlioğlu, K., Ocak, Y., Aksöz, S. et al. Determination of interfacial energies for solid al solution in equilibrium with Al-Cu-Ag liquid. Met. Mater. Int. 16, 51–59 (2010). https://doi.org/10.1007/s12540-010-0051-6
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DOI: https://doi.org/10.1007/s12540-010-0051-6