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卷对卷狭缝式模头涂布系统中张紧卷材上疏水涂层的透过率控制

Transmittance Control of a Water-Repellent-Coated Layer on a Tensioned Web in a Roll-to-Roll Slot-Die Coating System.

作者信息

Kim Seongyong, Jo Minho, Lee Jongsu, Lee Changwoo

机构信息

Department of Mechanical Design and Production Engineering, Konkuk University, Seoul 05029, Korea.

Department of Printed Electronics Engineering, Sunchon National University, Suncheon 57922, Korea.

出版信息

Polymers (Basel). 2021 Nov 19;13(22):4003. doi: 10.3390/polym13224003.

Abstract

Solar cells are important alternatives to fossil fuels for energy generation in today's world, where the demand for alternative, renewable sources of energy is increasing. However, solar cells, which are installed outdoors, are susceptible to pollution by environmental factors. A solution to overcome this limitation involves coating solar cell surfaces with functional coatings. In this study, we propose a transmittance control method for a tensioned web in a roll-to-roll, transparent, water-repellent film coating. First, we analyzed the effects of process conditions on the transmittance and contact angle of the transparent water-repellent film during roll-to-roll slot-die coating. It was confirmed that the tension was the most dominant factor, followed by the coating gap. Through the tension control, the transmittance was changed by 3.27%, and the contact angle of the DI water was changed by 17.7°. In addition, it was confirmed that the transmittance was changed by 0.8% and the contact angle of DI water by 3.9° via the coating gap control. Based on these results, a transmittance prediction model was developed according to the tension and coating gap, and was then verified experimentally. Finally, a water-repellent film with a high transmittance of 89.77% was obtained using this model.

摘要

在当今世界,对替代的可再生能源的需求不断增加,太阳能电池是化石燃料用于发电的重要替代品。然而,安装在户外的太阳能电池容易受到环境因素的污染。克服这一限制的一种解决方案是用功能涂层涂覆太阳能电池表面。在本研究中,我们提出了一种用于卷对卷透明疏水薄膜涂层中张紧卷材的透光率控制方法。首先,我们分析了卷对卷狭缝模头涂布过程中工艺条件对透明疏水薄膜的透光率和接触角的影响。结果证实,张力是最主要的因素,其次是涂布间隙。通过张力控制,透光率变化了3.27%,去离子水的接触角变化了17.7°。此外,通过涂布间隙控制,证实透光率变化了0.8%,去离子水的接触角变化了3.9°。基于这些结果,根据张力和涂布间隙建立了透光率预测模型,然后进行了实验验证。最后,使用该模型获得了透光率高达89.77%的疏水薄膜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83d4/8620358/7c95a6850a6a/polymers-13-04003-g001.jpg

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