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Detachment of secondary dendrite arm in a directionally solidified Sn-Ni peritectic alloy under deceleration growth condition

机译:减速生长条件下定向凝固Sn-Ni包晶合金中二次枝晶臂的分离

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摘要

In order to better understand the detachment mechanism of secondary dendrite arm during peritectic solidification, the detachment of secondary dendrite arm from the primary dendrite arms in directionally solidified Sn-36at.%Ni peritectic alloys is investigated at different deceleration rates. Extensive detachment of secondary dendrite arms from primary stem is observed below peritectic reaction temperature TP. And an analytical model is established to characterize the detachment process in terms of the secondary dendrite arm spacing λ2, the root radius of detached arms and the specific surface area (SV) of dendrites. It is found that the detachment mechanism is caused by not only curvature difference between the tips and roots of secondary branches, but also that between the thicker secondary branches and the thinner ones. Besides, this detachment process is significantly accelerated by the temperature gradient zone melting (TGZM) effect during peritectic solidification. It is demonstrated that the reaction constant (f) which is used to characterize the kinetics of peritectic reaction is crucial for the determination of the detachment process. The value of f not only changes with growth rate but also with solidification time at a given deceleration rate. In conclusion, these findings help the better understanding of the detachment mechanism.
机译:为了更好地理解包晶凝固过程中次枝晶臂的脱离机理,研究了在不同减速速率下定向凝固的Sn-36at。%Ni包晶合金中次枝晶臂与初枝晶臂的分离。在包晶反应温度TP以下,观察到次生枝晶臂从主茎广泛脱离。建立了解析模型,以二次枝晶臂间距λ2,枝根的根半径和枝晶的比表面积(SV)表征了剥离过程。研究发现,分离机理不仅是由次生枝叶的尖端和根部之间的曲率差异引起的,而且还由较粗的次生枝叶和较细的枝干之间的曲率差异引起。此外,包晶凝固过程中的温度梯度区熔化(TGZM)效应大大促进了这种分离过程。结果表明,用于表征包晶反应动力学的反应常数(f)对于确定脱离过程至关重要。在给定的减速率下,f的值不仅随增长率变化,而且随凝固时间变化。总之,这些发现有助于更好地了解分离机制。

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