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Numerical Modeling of Ink Widening and Coating Gap in Roll-to-Roll Slot-Die Coating of Solid Oxide Fuel Cell Electrolytic Layer

机译:固体氧化物燃料电池电解层卷辊槽模涂层墨水扩大和涂层间隙的数值模拟

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摘要

Slot-die coatings are advantageous when used for coating large-area flexible devices; in particular, the coating width can be controlled and simultaneous multi-layer coatings can be processed. To date, the effects of ink widening and the coating gap on the coating thickness have only been considered in a few studies. To this end, we developed two mathematical models to accurately estimate the coating width and thickness that consider these two effects. We used root mean square deviation (RMSD) to experimentally verify the developed method. When the coating gap was increased, the coating width increased and the coating thickness decreased. Experimental results showed that the estimated performances of the coating width and thickness models were as high as 98.46% and 95.8%, respectively. We think that the developed models can be useful for determining the coating conditions according to the ink properties to coat a functional layer with user-defined widths and thicknesses in both lab- and industrial-scale roll-to-roll slot-die coating processes.
机译:用于涂覆大面积柔性装置时,槽模涂层是有利的;特别地,可以控制涂层宽度并且可以处理同时加工多层涂层。迄今为止,在几种研究中仅考虑了墨水加宽和涂层间隙对涂层厚度的影响。为此,我们开发了两种数学模型,以准确估计考虑这两种效果的涂层宽度和厚度。我们使用root均方偏差(RMSD)来实验验证开发的方法。当涂层间隙增加时,涂层宽度增加并且涂层厚度降低。实验结果表明,涂​​层宽度和厚度模型的估计性能分别高达98.46%和95.8%。我们认为开发的模型可用于根据油墨性能确定涂层条件,以在实验室和工业型卷槽槽槽模具涂覆工艺中具有用户限定的宽度和厚度的功能层。

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