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The effect of inorganic particles on slot die coating of poly(vinyl alcohol) solutions

机译:无机颗粒对聚乙烯醇溶液缝模涂布的影响

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摘要

Among various coating processes, slot die coating belongs to a class of pre-nietered coating, in which the coating film thickness can be predetermined. In the past, most research works oil slot die coating have focused mainly oil polymer solutions; very little information is available ssing suspensions as coating fluids. In this study, the effect of adding TiO2 and SiO2 in aqueous polyvinyl alcohol (PVA) solutions oil slot die coating is investigated. It was found that the stable coating window was enlarged with the addition of particles, and its size increased with solids concentration. This is due to the strong interaction between polymer and particles, resulting in a higher viscosity and surface tension. As a result, the upstream coating head is more stable and the maximum coating speed is extended to a high value, hence the coating window becomes larger. Although both viscosity and surface tension appear to contribute to the stability of coating flow, the effect of surface tension is more dominant. The surface tension of a suspension with porous particles was higher than one with hard solid particles. Consequently, the coating window obtained with the former was significantly larger than the latter. Flow visualisation revealed that under the same operating conditions, the upstream dynamic contact angle for the suspension was smaller than for the aqueous polymer solution. This observation could be related to the stability of the upstream coating head, and hence the coating window. The experimental flow fields were verified numerically with the aid of a numerical simulation package (Flow-3D). (c) 2005 Elsevier Inc. All rights reserved.
机译:在各种涂覆工艺中,狭缝模头涂覆属于一类预冲孔涂覆,其中可以预定涂膜厚度。过去,大多数油槽模头涂料的研究工作主要集中于油聚合物解决方案。将悬浮液用作涂料液的信息很少。在这项研究中,研究了在水性聚乙烯醇(PVA)溶液油槽模头涂料中添加TiO2和SiO2的效果。已发现,随着颗粒的添加,稳定的涂层窗口增大,并且其尺寸随着固体浓度而增大。这是由于聚合物和颗粒之间的强相互作用,导致较高的粘度和表面张力。结果,上游涂布头更稳定并且最大涂布速度扩展到高值,因此涂布窗口变大。尽管粘度和表面张力似乎都有助于涂层流动的稳定性,但表面张力的影响更为明显。具有多孔颗粒的悬浮液的表面张力高于具有硬固体颗粒的悬浮液的表面张力。因此,用前者获得的涂层窗口明显大于后者。流动可视化显示,在相同的操作条件下,悬浮液的上游动态接触角小于聚合物水溶液的上游动态接触角。该观察结果可能与上游涂覆头的稳定性有关,并因此与涂覆窗口有关。实验流场借助数值模拟程序包(Flow-3D)进行了数值验证。 (c)2005 Elsevier Inc.保留所有权利。

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