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首页> 外文期刊>Physica, B. Condensed Matter >Comparisons of grain refinement and recalescence behavior during the rapid solidification of undercooled CuCo and CuNi alloys
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Comparisons of grain refinement and recalescence behavior during the rapid solidification of undercooled CuCo and CuNi alloys

机译:过冷CuCo和CuNi合金快速凝固过程中晶粒细化和再结晶行为的比较。

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摘要

Applying the melt-fluxing method, rapid solidifications of undercooled Cu_(50)Co_(50) immiscible and Cu_(70)Ni_(30) solid solution alloys were performed to investigate the grain refinement regularity at moderate undercooling. Due to the essential distinction of physical properties between these alloys, grain refinement phenomenon was detected in Cu_(50)Co_(50) alloy with a tendency of liquid separation, while dendrite structure appears for Cu_(70)Ni_(30) alloy. The association of microstructure morphology to non-equilibrium solidification process was constructed with the description of recalescence degree as a function of undercooling. Quantitative thermodynamic calculation for the undercooled liquid of the researched systems was carried out to elucidate the influence of liquid separation on the variation of Gibbs free energy for the subsequent rapid solidification, which gives a better understanding of the as-observed experimental results.
机译:采用熔熔法,对过冷的Cu_(50)Co_(50)不溶混和Cu_(70)Ni_(30)固溶合金进行了快速凝固,以研究中度过冷时晶粒细化的规律性。由于这些合金之间物理性质的本质区别,在Cu_(50)Co_(50)合金中发现了细化现象,并具有液体分离的趋势,而Cu_(70)Ni_(30)合金则出现了枝晶结构。通过将再结晶度描述为过冷的函数,构造了微观结构形态与非平衡凝固过程的关系。对所研究系统的过冷液体进行了定量热力学计算,以阐明液体分离对随后快速凝固的吉布斯自由能变化的影响,从而更好地理解了观察到的实验结果。

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