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Thermo dynamic and surface properties of Sb-Sn and In-Sn liquid alloys

机译:Sb-Sn和In-Sn液态合金的热力学和表面性质

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The thermodynamic properties of Sb-Sn and In-Sn liquid alloys have been studied using the quasi-chemical model for compound forming binary alloys and that for simple regular alloys. The concentration fluctuation S_(cc)(0) and the Warren-Cowley short-range order parameter (α_1) were determined for the whole concentration range at a temperature of 770 K. The surface tensions of these liquid alloys were determined for the whole concentration range by using energetics determined from thermodynamic calculations. In all calculations, In-Sn manifested properties very close to alloys of ideal mixing, while Sb-Sn showed properties that are asymmetric about equiatomic composition. Our results suggest that a weak complex of the form SbSn_2 could be present in the Sb-Sn alloy at a temperature of about 770 K.
机译:使用准化学模型对化合物形成二元合金和简单规则合金的Sb-Sn和In-Sn液态合金的热力学性质进行了研究。在温度为770 K的整个浓度范围内确定浓度波动S_(cc)(0)和Warren-Cowley短程有序参数(α_1)。在这些液体合金的表面张力下确定整个浓度通过使用由热力学计算确定的能量学来确定范围。在所有计算中,In-Sn的性能都非常接近理想混合合金,而Sb-Sn的性能则对等原子组成不对称。我们的结果表明,在约770 K的温度下,Sb-Sn合金中可能存在SbSn_2形式的弱配合物。

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