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Nucleation kinetics of continuously cooling Fe-17 at.%B droplets produced by controlled capillary jet breakup

机译:连续冷却Fe-17 at.B液滴的受控冷却毛细管射流破碎产生的形核动力学

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摘要

A new method for the investigation of the nucleation kinetics of traveling droplets was applied to mono-size droplets of an Fe-17 at.%B alloy generated by a controlled capillary jet breakup process. The developed method determines the in-flight nucleation kinetics of droplets from metallographic data and simulated droplet-cooling schedules. An iterative procedure is used to cross-validate the metallographic data and the model predictions. With the cross-validated data and simulation models, nucleation temperatures of Fe-17at.%B droplets were calculated for various diameters and cooling conditions and shown in the form of continuous-cooling transformation (CCT) diagrams. The critical cooling rate for the amorphous solidification of Fe-17 at.%B droplets was predicted as a function of droplet diameter and verified metallographically.
机译:研究行进液滴的成核动力学的新方法被应用于通过可控的毛细喷射破裂过程产生的Fe-17 at。%B合金的单尺寸液滴。所开发的方法根据金相数据和模拟的液滴冷却时间表确定液滴在飞行中的成核动力学。迭代过程用于交叉验证金相数据和模型预测。利用交叉验证的数据和仿真模型,计算了各种直径和冷却条件下Fe-17at。%B液滴的成核温度,并以连续冷却转变(CCT)图的形式显示。预测了Fe-17 at.B液滴的无定形凝固的临界冷却速率与液滴直径的关系,并通过金相验证。

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