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Two-layer tensioned-web-over-slot die coating: Effect of operating conditions on coating window

机译:两层张紧网槽式模具涂布:操作条件对涂布窗口的影响

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摘要

Tensioned-web-over-slot die (TWOSD) coating deploys elastohydrodynamic interaction to control the distance between the moving substrate and the coating die lip surface in order to be able to coat an ultra-thin liquid layer. Dual slot TWOSD coating is designed to deposit two thin uniform liquid layers onto a moving web simultaneously. Like in the fixed-gap dual slot coating, the interlayer separation point needs to be at the downstream corner of the mid lip in order to prevent coating defects. Different flow features, like weeping, bead breakup and feed slot vortices, limit the range of operating parameters that ensures uniform coating, and define the operating window of the process. In this study, we analyze dual slot TWOSD coating flow by solving the Navier-Stokes equation coupled with thin cylindrical shell equation using the finite element method. The boundaries in the parameter space that define the operating window or vortex-free window are automatically computed by a direct tracking method of flow features. The effect of operating conditions, such as liquid viscosity, web tension and web speed, on the critical layer thickness at which the coating becomes non-uniform is determined by this study.
机译:狭缝张网涂布(TWOSD)涂层采用弹性流体动力学相互作用来控制移动的基材和涂层模唇表面之间的距离,以便能够涂布超薄液体层。双槽TWOSD涂层旨在将两个薄而均匀的液体层同时沉积到移动的纸幅上。像在固定间隙双缝涂层中一样,为了防止涂层缺陷,层间分离点需要在中唇的下游角。不同的流动特性(例如,滴液,珠粒破裂和进料槽涡旋)限制了确保均匀涂层的操作参数范围,并定义了过程的操作窗口。在这项研究中,我们通过使用有限元方法求解Navier-Stokes方程与薄圆柱壳方程相结合来分析双槽TWOSD涂层流动。定义操作窗口或无涡流窗口的参数空间中的边界通过流动特征的直接跟踪方法自动计算。通过这项研究确定了操作条件(例如液体粘度,幅材张力和幅材速度)对涂层变得不均匀的临界层厚度的影响。

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