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PIV measurements of metallic powders produced by liquid metal atomization using De Laval nozzle

机译:液态金属雾化使用De Laval喷嘴生产的金属粉末PIV测量

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Liquid metal atomization using De Laval nozzle is an established technique for producing fine (<100 μm) metal powders for a lot of industrial applications. This process offers a variety of advantages as spherical morphology or low consumption of inert gas for example. Despite its widespread uses, however, the relationships among gas dynamics melt nozzle and De Laval nozzle diameters, processing parameters, and particle size remain defined. As a result, efforts to reduce powder costs by improving particle size control and energy efficiency remain hindered. Then, the optimization of this process is a great challenge. This experimental study examines the atomizing spray behavior depending on the process parameters. Experiments were conducted on copper (at 99.9%). Particle Image Velocimetry technique was implemented in the atomization chamber and measurements were performed to characterize in velocity the atomized droplets. The PIV system was placed in such a way that the atomization zone, comprised between 50 and 110 mm downstream the de Laval nozzle exit, can be monitored by the camera. The evolutions of the particle velocity and particle sizes were finally analyzed versus the working conditions.
机译:使用De Laval喷嘴的液态金属雾化是用于生产很多工业应用的细(<100μm)金属粉末的既定技术。例如,该方法提供了各种优点,例如球形形态或惰性气体的低消耗。然而,尽管其广泛的用途,但是气体动力学熔喷喷嘴和De Laval喷嘴直径,加工参数和粒度的关系仍然定义。因此,通过提高粒度控制和能效来降低粉末成本的努力保持阻碍。然后,这个过程的优化是一个巨大的挑战。该实验研究根据过程参数检查雾化喷雾行为。实验在铜上进行(99.9%)。在雾化室中实现粒子图像速度仪技术,并进行测量以表征速度雾化液滴。 PIV系统以这样的方式放置,使得通过相机监测De Laval喷嘴出口下游50至110mm之间的雾化区。最终分析了颗粒速度和粒度的演变与工作条件相比。

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