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Modeling of heat flow and solidification during atomization and spray deposition processing

机译:雾化和喷涂过程中的热流和凝固建模

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摘要

A mathematical model of the spray deposition process, based on heat flow analysis during solidification of droplets, as well as that of the spray deposit, is presented. The heat flow during cooling of droplets is analyzed in five distinct stages. A one-dimensional heat transfer model, using a finite difference method, is used to calculate the temperature of the deposit. The results indicate that the cooling rate of a wide size range of droplets of Al-4.5 Cu alloy in the spray varies from 103-105 ℃ s{sup}(-1) in contrast to a slow cooling rate of 1-10 ℃ s{sup}(-1) of the spray deposit. The spray enthalpy on the deposition surface increases linearly with the melt superheat. In contrast, the atomization gas pressure does not have a significant influence on the enthalpy of the spray in this process. The cooling rate of the deposits predicted from the model compares well with those obtained by the measurements.
机译:提出了基于液滴凝固过程中的热流分析以及喷雾沉积过程的数学模型的喷雾沉积过程。在五个不同阶段分析液滴冷却过程中的热流。使用有限差分法的一维传热模型用于计算沉积物的温度。结果表明,喷雾中较大尺寸范围的Al-4.5 Cu合金液滴的冷却速率在103-105℃s {sup}(-1)范围内变化,而缓慢冷却速率为1-10℃s {sup}(-1)的喷雾沉积物。沉积表面上的喷射焓随熔体过热线性增加。相反,在此过程中,雾化气体压力对喷雾的焓没有显着影响。根据模型预测的沉积物的冷却速率与通过测量获得的冷却速率比较好。

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