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A noble gas wiping system to prevent the edge overcoating in continuous hot-dip galvanizing

机译:一种惰性气体擦拭系统,可防止连续热浸镀锌时的边缘涂层

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摘要

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 (ISIJ International, Vol. 27 (2003), No. 10, pp. 1495-1501), it was found that the EOC is caused by the alternating vortices which are generated by the collision of two opposing jets in the region outside the steel strip. In the present study, the flow field around the gas wiping system has been analyzed numerically and it was found that when the two opposing jets collide at an angle much less than 180 deg, the alternating vortices disappear and the impinging pressure on the steel strip surface becomes nearly uniform. In order to deflect both jets downward by a certain angle, a cylinder with small diameter is installed tangentially to each exit of the lower lips of the two-dimensional opposing jets. The three dimensional flow field with the proposed device is analyzed numerically by using the commercial CFD software, STAR-CD. And the coating thickness is calculated by solving the boundary layer momentum equation with an integral analysis method. In order to compare the present noble method with the conventional edge baffle plate method to prevent the EOC, the flow field with edge baffle plates is also calculated. The calculation results show that the tangentially installed cylinder at the lower lip of the jet exit is significantly more effective than the edge baffle plate.
机译:提出了一种防止在连续热浸镀锌的气体擦拭过程中可能在钢带边缘附近形成边缘涂层(EOC)的高贵方法。在我们过去的研究中(ISIJ International,第27卷(2003年),第10期,第1495-1501页),发现EOC是由交变涡流引起的,交变涡流是由两个相对射流的碰撞产生的。钢板外的区域。在本研究中,对气体擦拭系统周围的流场进行了数值分析,结果发现,当两个相对的射流以远小于180度的角度碰撞时,交替的涡流消失并且钢带表面上的撞击压力变得几乎统一。为了使两个喷嘴向下偏转一定角度,在与二维相对喷嘴的下唇的每个出口相切的位置上安装了直径较小的圆柱体。通过使用商用CFD软件STAR-CD,对提出的装置的三维流场进行了数值分析。然后通过积分分析法求解边界层动量方程来计算涂层厚度。为了将本发明的方法与常规的边缘挡板方法进行比较以防止EOC,还计算了带有边缘挡板的流场。计算结果表明,切向安装在射流出口下唇处的圆柱比边缘挡板更有效。

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