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Microstructure Formation in a Gas-Atomized Drop of Al-Pb-Sn Immiscible Alloy

机译:Al-Pb-Sn互溶合金的气雾化液滴中的微观结构形成

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摘要

Al-Pb-Sn alloy is rapidly solidified by using the high-pressure gas-atomization technique. A model describing the microstructure evolution in an atomized drop is developed. This model takes into account the concurrent actions of the nucleation, diffusional growth, spatial motions of the minority-phase droplets, and the solidification of the matrix liquid. The microstructure formation in the gas-atomized drop is simulated by coupling the thermodynamic and kinetic calculations. The numerical results show a favorable agreement with the experimental results. They demonstrate that under the rapid cooling conditions of gas atomization, the spatial phase separation due to the Marangoni migration of the minority-phase droplets mainly affects the microstructure formation in a small region close to the atomized drop surface. All the minority-phase droplets are nucleated during the liquid–liquid phase decomposition period. For an Al-(5-9) wt pct Pb-3 wt pct Sn alloy, the average radius and number density of the minority-phase particles depend exponentially on the powder diameter. The microstructure formation process is discussed in detail.
机译:通过使用高压气体雾化技术,Al-Pb-Sn合金快速凝固。建立了描述雾化液滴中微观结构演变的模型。该模型考虑了成核,扩散生长,少数相液滴的空间运动以及基质液体的固化等同时发生的作用。通过热力学和动力学计算的耦合来模拟气雾化液滴中的微观结构形成。数值结果与实验结果吻合良好。他们证明,在气体雾化的快速冷却条件下,少数相液滴的Marangoni迁移引起的空间相分离主要影响靠近雾化液滴表面的小区域内的微观结构形成。在液相-液相分解期间,所有少数相液滴都成核。对于Al-(5-9)wt pct Pb-3 wt pct Sn合金,少数相颗粒的平均半径和数量密度与粉末直径成指数关系。详细讨论了微观结构形成过程。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第13期|p.5019-5028|共10页
  • 作者

    Lei Zhao; Jiuzhou Zhao;

  • 作者单位

    Institute of Metal Research, Chinese Academy of Sciences, Shenyang, Liaoning, 110016, P.R. China;

    Institute of Metal Research, Chinese Academy of Sciences, Shenyang, Liaoning, 110016, P.R. China;

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