气雾化法制高氮钢粉体过程中含氮熔滴的强化破碎数值模拟

    Numerical Simulation of Enhanced Crushing of Nitrogenous Droplet in Preparation of High Nitrogen Steel Powders by Aerosol Atomization

    • 摘要: 运用气雾化法制备含氮不锈钢粉体的过程中,经过一次破碎后的带状熔滴在氮气流的剪切作用下破碎为细小熔滴,一般直径在50~100μm。二次雾化后,由于含氮熔滴气-液两相间界面不稳定导致内部氮气泡溢出,直径较大的熔滴因氮气“逃逸”而发生再次的强化破碎。限于该微观过程无法直接在实验条件下观察分析,本研究运用Fluent16.0对该强化破碎过程进行数值模拟,获得强化破碎过程中熔滴的动终态、压力值分布和熔滴组分变化情况,同时阐述了该两相流耦合过程中的内在机理以及熔滴强化破碎后的效果。

       

      Abstract: In the process of preparing nitrogen containing stainless steel powders by gas atomization, the banded molten droplets after first crushing were broken into small molten droplets generally with a diameter of 50-100 μm under the action of nitrogen flow shear. After secondary atomization, the internal nitrogen bubbles overflowed sdue to the unstable interface between the gas-liquid phase in the nitrogen-containing melt droplets, which lead to the enhanced crushing of the larger molten droplet due to the "escape" of nitrogen. This microscopic process cannot be directly observed and analyzed under experimental conditions, Fluent 16.0 was used to conduct numerical simulation of enhanced crushing process to obtain the movement track of molten droplets and the change of pressure value during the enhanced crushing process. At the same time,the internal mechanism of the two-phase flow coupling process and the effect of enhanced crushing were described.

       

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