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Processing parameter effect on the splat diameters of the droplets produced by liquid metal atomization using De Laval nozzle

机译:工艺参数对使用De Laval喷嘴的液态金属雾化产生的液滴的飞溅直径的影响

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摘要

Liquid metal atomization with De Laval nozzle is not a widely used technique to produce metallic powders. It appears as a versatile process to manufacture different particle sizes according to the processing parameters (gas pressure, melt nozzle diameter, De Laval nozzle diameter, etc.). However, few studies have focused on the understanding of the different stages of the process. During the atomization process two pressure stages can be distinguished: transition time (pressurization time) and stabilized stage (setting pressure).The aim of the work is to study the effect of the operating parameters on the splat diameter during these two stages. Copper (99.9. at. %) was atomized using different sets of operating parameters on smooth steel substrates. Different splat shapes and mean equivalent diameters are observed and have shown that they depended on both, the atomization parameters and the atomization time.
机译:用拉拉瓦尔喷嘴进行液态金属雾化不是生产金属粉末的广泛使用的技术。它看起来像是根据加工参数(气压,熔体喷嘴直径,德拉瓦夫喷嘴直径等)制造不同粒径的通用方法。但是,很少有研究集中在对过程的不同阶段的理解上。在雾化过程中,可以区分两个压力阶段:过渡时间(加压时间)和稳定阶段(设定压力)。工作的目的是研究在这两个阶段中操作参数对飞溅直径的影响。在光滑的钢基材上使用不同的操作参数将铜(99.9 at。%)雾化。观察到不同的喷溅形状和平均等效直径,并表明它们取决于雾化参数和雾化时间。

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