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Visualization Study of Two-layer Reverse Roll Transfer

机译:两层反向滚转的可视化研究

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Reverse roll coating in which a thin single layer of liquid is applied onto a substrate has been used in industry for decades and has been extensively analyzed in the literature. Modern coatings, however, are often composed of more than one layer to improve product performance and to reduce manufacturing cost. Pre-metered methods such as slot, slide and curtain coating are typically used to produce such multilayer coatings. If the caliper of the substrate to be coated is not constant, the coating gap and consequently the final film thickness deposited on the web will also be non-uniform. In this study we focused on the use of reverse roll technique with slot die liquid delivery system to produce a uniform thin two-layer coating. The use of this coating technique to produce such a coating has not been previously explored. The liquid film surface as it is transferred from a rigid steel roll to a deformable urethane covered roll was visualized in order to find out how the uniformity of two layer coating is affected by the speed ratio between two rolls, layers wet thickness and liquid viscosities. The effect of these parameters on the ribbing frequency and amplitude was also investigated.The results show that in two layer coating, as in the single layer reverse transfer, there is a critical web speed above which ribbing occurs. The critical speed is determined by the bottom layer viscosity.
机译:在工业上已经使用了将薄薄的单层液体涂覆到基材上的反向辊涂,并且在文献中已经进行了广泛的分析。但是,现代涂料通常由不止一层组成,以提高产品性能并降低制造成本。诸如狭缝,滑动和幕涂的预计量方法通常用于生产这种多层涂层。如果待涂覆基材的厚度不恒定,则涂覆间隙以及因此沉积在幅材上的最终膜厚度也将是不均匀的。在这项研究中,我们专注于使用反向辊技术和缝模液体输送系统来生产均匀的薄两层涂层。以前没有研究过使用这种涂层技术生产这种涂层。将液膜表面从刚性钢辊转移到可变形的氨基甲酸乙酯覆盖的辊上进行可视化处理,以发现两层涂层的均匀性如何受到两个辊之间的速度比,层的湿厚度和液体粘度的影响。还研究了这些参数对罗纹频率和幅值的影响。结果表明,在两层涂层中,与单层反向转印一样,存在临界的幅材速度,高于此速度就会发生罗纹。临界速度由底层粘度决定。

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