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Surface Tension and its Temperature Coefficient of Liquid Sn-X (X = Ag, Cu) Alloys

机译:液态Sn-X(X = Ag,Cu)合金的表面张力及其温度系数

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The surface tension of liquid Sn-X (X=Ag, Cu) alloys was measured by the constrained drop method in the temperatures between 700 and 1.500 K across whole composition range. Surface tension of the alloys increased with the content of Ag and Cu, and the temperature coefficient of the surface tension (dσ/dT) had both positive and negative values. Experimental results were compared with the calculated results based on Butler's model. The calculated results reasonably accorded with the measurements, The effect of thermo-physical parameters on the surface tension and the temperature coefficient were examined using the model. It was found that the temperature coefficient increases as the difference in the surface tension of component metals or the excess free energy increases in the high composition range of the component metal having higher surface tension, because of the surface enhancement of the other component metal.
机译:液态Sn-X(X = Ag,Cu)合金的表面张力是通过约束滴落法在700至1.500 K的整个组成范围内的温度下测量的。合金的表面张力随Ag和Cu含量的增加而增加,表面张力的温度系数(dσ/ dT)既有正值,也有负值。将实验结果与基于巴特勒模型的计算结果进行比较。计算结果与实测值基本吻合,利用模型研究了热物理参数对表面张力和温度系数的影响。已经发现,由于其他成分金属的表面增强,在具有较高表面张力的成分金属的高组成范围内,温度系数随着成分金属的表面张力之差或过量的自由能增加而增加。

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