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Coarsening mechanisms in a dendritic Al-10 Cu alloy

机译:枝晶状Al-10Cu合金的粗化机理

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摘要

Coarsening of a dendritic Al-10 wt. Cu alloy at 570 °C was investigated by fast in situ X-ray tomography. The variation of the spe-cific solid-liquid interface area as a function of time was found to follow a power-law relation with an exponent close to —1/4. Three coarsening mechanisms operate in the alloy: (i) melting of small dendrite arms to the benefit of the adjacent arms (small arm melting), similar to Ostwald ripening; (ii) gradual movement of the base of the interdendritic grooves towards the tips (interdendritic groove advancement); (iii) coalescence of dendrites near the tips leading to the entrapment of liquid tubes or droplets (coalescence and groove advancement). The coarsening models proposed in the literature do not adequately resemble or predict the behaviour observed in the experiments. New models were developed for the first two coarsening mechanisms and predict the coarsening rate with very good agreement.
机译:采用快速原位X射线断层扫描研究了树枝状Al-10 wt.%Cu合金在570 °C下的粗化情况。研究发现,固液界面面积随时间的变化遵循幂律关系,指数接近 —1/4。合金中有三种粗化机制:(i)小枝晶臂的熔化有利于相邻臂(小臂熔化),类似于奥斯特瓦尔德成熟;(ii)树突间沟的基部逐渐向尖端移动(树突间沟推进);(iii)尖端附近枝晶的聚结导致液体管或液滴的截留(聚结和凹槽推进)。文献中提出的粗化模型不能充分地类似于或预测实验中观察到的行为。针对前两种粗化机制开发了新的模型,并很好地预测了粗化速率。

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