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Modeling of the solidification of gas-atomized alloy droplets during spray forming

机译:喷雾成型过程中气雾化合金液滴凝固的建模

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In order to describe the microstructure evolution of a supercooled droplet under the situation that the nucleation and the growth of the grains occur concurrently during spray forming, a model has been developed based on the population dynamics method. This model is solved numerically to investigate the solidification behaviors of the gas atomized Al-4.5 wt.% Cu droplets. The results show that the nucleation takes place under a critical supercooling for a given droplet. The grain sizes are significantly different during the period of nucleation and recalescence, but become uniform with the progress of the solidification. In addition, a smaller droplet has a higher cooling rate and a finer microstructure at the end of the solidification.
机译:为了描述在喷雾成形过程中同时发生晶粒成核和晶粒长大的情况下过冷液滴的微观结构演变,基于种群动力学方法建立了模型。通过数值求解该模型来研究气体雾化的Al-4.5 wt。%Cu小滴的凝固行为。结果表明,对于给定的液滴,成核是在临界过冷条件下发生的。在成核和复光期间,晶粒尺寸显着不同,但是随着凝固的进行变得均匀。另外,较小的液滴在凝固结束时具有较高的冷却速率和较细的微观结构。

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