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COATING ONTO A PREWET SUBSTRATE WITH LOW WEBER NUMBER LIQUID CURTAIN

机译:用低韦伯数液体幕涂到预涂的基材上

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In recent years, miniaturization and high precision of the LCD screen used for small display has been developed fast. The thin and high-precision film covering the LCD screen is manufactured by slide coating. In slide coating, however, the distance between the slot and the substrate is too small. On the other hand, curtain coating can avoid the influence of the mechanical disturbance and is also a good method for coating on rugged substrate. Nevertheless, curtain coating has not been applied to the LCD screen because the liquid curtain with small discharge, i.e. small Weber number, causes instabilities of the flow and the free surfaces. In the present study, we performed the experiment of the liquid curtain bridged between the exit of slot die and moving roller under very small Weber number (We ~0.1). It is found that the surface waves are reduced by using a roller pre-wetted by mists and by changing the viscosity of the liquid. Also, the coating window can be drawn in a plane of surface tension and viscosity. Finally, we tried to explain these phenomena by analyzing the equations of liquid curtain.
机译:近年来,用于小显示的LCD屏幕的小型化和高精度发展很快。覆盖LCD屏幕的薄而高精度的薄膜是通过滑动涂层制造的。然而,在滑动涂层中,狭缝与基板之间的距离太小。另一方面,幕涂可以避免机械干扰的影响,也是在粗糙基体上进行涂层的好方法。然而,由于具有小排放即小韦伯数的液幕会引起流动和自由表面的不稳定性,所以尚未将幕涂应用于LCD屏幕。在本研究中,我们进行了在很小的韦伯数(We〜0.1)下,在缝隙模的出口和动辊之间架起液帘的实验。已经发现,通过使用由雾预先润湿的辊并通过改变液体的粘度来减小表面波。同样,可以在表面张力和粘度的平面上绘制涂层窗口。最后,我们尝试通过分析液幕方程来解释这些现象。

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