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http://dx.doi.org/10.3795/KSME-B.2005.29.10.1156

A Downwardly Deflected Symmetric Jet to prevent Edge Overcoating in Continuous Hot-Dip Galvanizing  

Ahn, Gi-Jang (한국과학기술원 기계공학과)
Chung, Myung-Kyoon (한국과학기술원 기계공학과)
Publication Information
Transactions of the Korean Society of Mechanical Engineers B / v.29, no.10, 2005 , pp. 1156-1162 More about this Journal
Abstract
In this study, a noble method is proposed to prevent the edge overcoating (EOC) that may develop near the edge of the steel strip in the gas wiping process of continuous hot-dip galvanizing. In our past study (Trans. of the KSME (B), Vol. 27, No. 8, pp. $1105\~1113$), it was found that EOC is caused by the alternating vortices which are generated by the collision of two opposed jets in the region outside the steel strip. When the two opposed jets collide at an angle much less than $180^{o}$, non-alternating stable vortices are established symmetrically outside the steel strip, which lead to nearly uniform pressure on the strip surface. In order to deflect both jets downward by a certain angle, a cylinder with small diameter is installed tangentially to the exit of the lower lip of the two-dimensional jet. In order to find an optimum cylinder diameter, the three dimensional flow field is analysed numerically by using the commercial code, STAR-CD. And the coating thickness is calculated by using an integral analysis method to solve the boundary layer momentum equation. In order to compare the present noble method with the conventional baffle plate method to prevent the EOC, the flow field with a baffle plate is also calculated. The calculation results show that the tangentially installed cylinder at the bottom lip of the jet exit is more effective than the baffle plate to prevent EOC.
Keywords
Air Knif; Continuous Hot-Dip Galvanizing; Edge -Overcoating; Strip Edge Vortex(; Coanda Effect;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
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2 Park, J. R., Jeon, S. H. and Park, R. B., 1999, 'Edge Overcoating and Buildup of Continuously Hot-Dip Metalized Strip,' Journal of the Korea Institute of Surface Engineering, Vol. 32, No.4, pp. 555-560
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4 Ellen, C. H. and Tu, C. V., 1984, 'An Analysis of Jet Stripping of Liquid Coating,' J. Fluids Engineering, Vol. 106, pp. 399-404   DOI
5 Cho, C. W., Kim, S. J., Ahn, G. J. and Chung, M. K., 2003, 'Analysis of a Vortex Structure Near the Strip Edge for Preventing Edge Zn Overcoation,' Trans. of the KSME (B), Vol. 27, No.8, pp. 1105-1113   과학기술학회마을   DOI