Solidification behaviour of rapidly quenched Cu-Sn alloys

J. Mahmoudi, H. Fredriksson
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引用次数: 2

Abstract

A series of solidification experiments using DTA furnace were performed on different Cu-Sn alloys. The undercooling, cooling rates of the liquid and the solid states, solidification times and temperatures were evaluated from the curves. The cooling curves for different samples and alloys were simulated using a FEM solidification program. The heat transfer coefficient and the heat of fusion were evaluated. The calculated fraction of solid formed before quenching has been compared with the experimental result. It was found that the calculated values of the heat of fusion were much lower than the tabulated ones. The fraction of solid was also found to be much higher than those calculated theoretically. It is proposed that a large number of vacancies form during rapid solidification and that they condense during and after the solidification. The influence of these defects on the thermodynamics and solidification of the alloys has been evaluated.
快速淬火Cu-Sn合金的凝固行为
采用DTA炉对不同铜锡合金进行了凝固实验。根据曲线计算了过冷度、液体和固体状态的冷却速率、凝固时间和凝固温度。利用有限元凝固程序模拟了不同试样和合金的冷却曲线。计算了传热系数和熔合热。计算结果与实验结果进行了比较。结果表明,核聚变热的计算值远低于表中的值。固体分数也比理论计算值高得多。提出在快速凝固过程中会形成大量的空位,并在凝固过程中和凝固后凝结。评价了这些缺陷对合金的热力学和凝固的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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