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Surface and transport properties of In-Sn liquid alloys

机译:In-Sn液态合金的表面和传输性能

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The thermodynamic properties of liquid In-Sn alloys indicate a weak interactions between unlike atoms. The new In, Sn and In-Sn surface tension experimental data set obtained by the large-drop method over the temperature range 523-923 K together with the literature data on different thermophysical properties substantiate a nearly ideal mixing behaviour of these alloys. A low interaction energies do not effect the composition dependence of thermophysical properties, in particular the surface tension and the surface segregation. In order to estimate the effects of the short-range order phenomenon on the surface properties of In-Sn liquids, the QCA (quasi chemical approximation) for the regular solution model and the CFM (compound formation model) have been applied. In the same framework the transport properties and the structural characteristics of liquid In-Sn alloys have also been analysed.
机译:液态In-Sn合金的热力学性质表明不同原子之间的相互作用较弱。通过大滴法在523-923 K的温度范围内获得的新的In,Sn和In-Sn表面张力实验数据集以及有关不同热物理性质的文献数据证实了这些合金的近乎理想的混合行为。低的相互作用能不影响热物理性质的组成依赖性,特别是表面张力和表面偏析。为了估计短程有序现象对In-Sn液体表面特性的影响,已应用了常规溶液模型的QCA(准化学逼近)和CFM(化合物形成模型)。在相同的框架下,还分析了液态In-Sn合金的传输性能和结构特征。

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