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Numerical Analysis of Edge Over-coating in Continuous Hot-dip Galvanizing

机译:连续热浸镀锌中边缘包覆的数值分析

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摘要

The edge over-coating (EOC) developed near the edge of a galvanized steel strip is numerically analyzed. The 3-D flow field with alternating vortices in the region away from the strip edge is investigated and the distributions of mean impinging pressure and shear stress on the strip surface are obtained by using a commercial 3-D flow analysis code, STAR-CD. It was found that the appearance of alternating vortices causes the surface pressure to decrease gradually approaching the strip edge. The coating thickness is calculated by one integral analysis method of the boundary layer momentum equation. A sample calculation of a benchmark experiment on EOC problem shows that the present analysis method yields a reasonably accurate prediction of EOC for a given plant operating condition. And the result demonstrates theoretically that EOC can be effectively remedied by adjusting the distance of the 2-D air-knife nozzle and by installing a baffle plate parallel to the end of the steel strip.
机译:对镀锌钢板边缘附近的边缘涂层(EOC)进行了数值分析。研究了在远离带材边缘的区域中具有交替涡旋的3-D流场,并使用商用3-D流分析代码STAR-CD获得了带材表面上平均冲击压力和剪切应力的分布。已经发现,交替涡旋的出现使表面压力逐渐降低,并接近带材边缘。通过边界层动量方程的一种积分分析方法来计算涂层厚度。对EOC问题的基准实验的样本计算表明,对于给定的工厂运行条件,本分析方法可得出合理准确的EOC预测。结果从理论上证明,通过调节二维气刀喷嘴的距离并平行于钢带末端安装挡板,可以有效地纠正EOC。

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