A Numerical Analysis on the Coating Thickness in Continuous Hot-Dip Galvanizing

연속 아연 도금 코-팅 두께에 관한 수치 해석적 연구

  • 이동원 (경북대학교 대학원 기계공학과) ;
  • 신승영 (경북대학교 대학원 기계공학과) ;
  • 김병지 (가톨릭상지대학 자동차모터스포츠과) ;
  • 권영두 (경북대학교 기계공학부) ;
  • 권순범 (경북대학교 기계공학부)
  • Published : 2007.05.30

Abstract

To control the coating thickness of zinc in the process of continuous hot-dip galvanizing, it is known from early day that the gas wiping through an air knife system is the most effective because of the obtainable of uniformity of coating thickness, possibility of thin coating, working ability in high speed and simplicity of control. But, the gas wiping using in the galvanizing process brings about a problem of splashing from the strip edge for a certain high speed of coating. And, it is known that the problem of splashing is caused mainly by the existence of separation bubble at the neighbor of the strip surface. In theses connections, in the present study, we proposed two kinds of air knife systems having the same expansion rate of nozzle, and the jet structures and coating thicknesses from a conventional and new proposed nozzles are compared. In numerical analysis, the governing equations consisted of two-dimensional time dependent Navier-Stokes equations, standard ${\kappa}-{\varepsilon}$ turbulence model to solve turbulence stress and so on are employed. As a result, it is found that it had better to use the constant rate nozzle from the point view of the energy saving to obtain the same coating thickness. Also, to reduce the size of separation bubble and to enhance the cutting ability at the strip, it is recommendable to use an air knife having the constant expansion rate nozzle.

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