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Analysis of flow development in centrifugal atomization: Part I. Film thickness of a fully spreading melt

机译:离心雾化中流动发展的分析:第一部分。完全扩散的熔体的膜厚

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Centrifugal atomization of metal melts is a cost-effective process for powder production and spray deposition. The properties of the as-produced powder and deposit are determined primarily by the characteristics of the atomized droplets, which in turn are largely dependent on the flow development of the melt on the atomizer. This paper develops a model for analysing the flow development of a fully spreading melt on and off the atomizing cup. The model can be used to calculate the velocity and film thickness of the melt as a function of melt volume flow rate, cup rotation speed, cup radius and cup slope angle, as well as to predict the trajectory of the spray off the cup. The model implies that the disintegration of a fully spreading melt takes place in the region just off the cup edge and the film thickness at the cup edge is a critical factor determining the sizes of the resultant droplets. The film thickness at the cup edge is shown to decrease with decreasing volume flow rate, with increasing cup rotation speed, with increasing cup radius and with decreasing cup slope angle.
机译:金属熔体的离心雾化是用于粉末生产和喷涂的经济有效的方法。所产生的粉末和沉积物的性质主要取决于雾化液滴的特性,而雾化液滴的特性又很大程度上取决于雾化器上熔体的流动发展。本文建立了一个模型,用于分析在雾化杯上下散布的熔体的流动发展。该模型可用于计算熔体的速度和薄膜厚度与熔体体积流量,杯的旋转速度,杯的半径和杯的倾斜角的关系,以及预测从杯中喷出的轨迹。该模型表明,完全扩散的熔体的崩解发生在杯边缘附近的区域,而杯边缘的膜厚是决定最终液滴尺寸的关键因素。杯边缘处的膜厚度显示出随着体积流量的减少,杯转速的增加,杯半径的增加以及杯倾斜角的减小而减小。

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