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A Parametric Study of a Multi-Slot Air Knife for Coating Thickness Reduction

机译:用于涂层厚度减小的多槽气刀的参数研究

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This paper presents an investigation of the gas jet wiping process, which is used in the continuous galvanizing line to control the Zn-alloy coating thickness on steel substrates. In this study, a novel configuration of a multi-slot air knife was used as the wiping actuator in a parametric study of the gas jet wiping process. The main goal of the study was to identify the operating window in which lighter coating weights can be achieved with the multi-slot air knife at higher strip velocities. A laboratory scale wiping apparatus was designed and manufactured and the effects of various operating conditions, such as: main and auxiliary jet Reynolds numbers, strip velocity and jet-to-substrate distances on the final coating thickness were determined. Numerical simulations of multi-slot jet wiping were also performed under the same operating conditions using computational fluid dynamics modeling to estimate the pressure and shear stress profiles along with analytical models of the coating thickness to compare with the experimental measurements.It was observed that the experimental measurements, under different operating conditions for the multi-slot air knives, agreed with the coating weight predictions of analytical models available from the literature. The results showed that the coating weight produced by the multi-slot air knife, with a relatively low flow for the auxiliary jet (i.e. Re_(a) /Re_(m) ≤ 0.5), was lower than the final coating weight under similar main jet Reynolds from a single slot nozzle. Conversely, when Re_(a) /Re_(m) ~ 1, lower pressure gradient distribution found in the wiping region and consequently increasing the coating thickness.
机译:本文介绍了气体喷射擦拭工艺的研究,该方法用于连续镀锌线以控制钢基材上的Zn合金涂层厚度。在该研究中,在气体喷射擦拭过程的参数研究中使用了多槽空气刀的新颖配置作为擦拭致动器。该研究的主要目的是识别在较高条带速度下的多槽气刀可以实现更轻的涂层重量的操作窗口。设计并制造了实验室擦拭装置,并且确定了各种操作条件的效果,例如:主和辅助射流雷诺数,在最终涂层厚度上,剥离速度和射流对基板距离。在使用计算流体动力学建模的相同操作条件下也进行了多槽喷射擦拭的数值模拟,以估计压力和剪切应力分布以及涂层厚度的分析模型,以与实验测量进行比较。是观察到实验性的在多槽空气刀的不同操作条件下测量,同意文献可获得的分析模型的涂层重量预测。结果表明,由多槽气刀产生的涂层重量,辅助射流的相对低流量(即RE_(a)/ re_(m)≤0.5)低于类似的主喷嘴下的最终涂层重量来自单个槽喷嘴。相反,当 re_(a)/ re_(m)〜1时,在擦拭区域中发现的较低压力梯度分布,从而增加涂层厚度。

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