用于制造电子织物的反向胶印技术

Huanghao Dai, Russel Torah, Steve Beeby
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引用次数: 0

摘要

:将电子元件直接印制到织物上以制造电子纺织品是一项前景广阔的技术,但目前受限于可实现的印制分辨率。与丝网印刷等替代技术相比,定制的反向胶印系统可以实现更高的分辨率,同时由于其辊对辊的特性,还具有可扩展性,因此我们对该系统是否适合用于印刷电子纺织品设备进行了探索。该工艺已成功地在柔性聚合物基材上实现了高分辨率图案,最细可达 30 微米,适合层压到纺织品上或直接印制到涂层织物上。印刷系统包括一个带有 PDMS 涂层辊筒的龙门平台,以及一个用于放置印版和基底的底座部分。系统由 LabVIEW 软件控制,以确保线性平台运动和辊筒旋转的精确同步。结果表明,与丝网印刷和喷墨印刷等传统方法相比,印刷分辨率有了显著提高。这项工作展示了反向胶印在柔性基底上制造先进电子设备的潜力,为可穿戴技术领域创造了新的可能性。
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Reverse-Offset Printing for Fabricating E-Textiles
: Printing electronics directly onto fabric to create e-textiles is a promising technology, but it is currently limited by the achievable printing resolution. The suitability of a bespoke reverse-offset printing system for use in printed e-textile devices has been explored because of the higher resolution it can achieve compared with alternatives such as screen printing, while still being scalable due to its roll-to-roll nature. The process has successfully achieved high-resolution patterns, as fine as 30 microns, on flexible polymer substrates suitable for lamination onto textiles and printing directly onto coated fabrics. The printing system comprises a gantry stage with a PDMS-coated roller and a base section that holds the clich é (patterned plate) and substrate. The system is controlled using LabVIEW software to ensure precise synchronization of the linear-stage movement and roller rotation. The results demonstrated a significant improvement in printing resolution compared to conventional methods such as screen and inkjet printing. This work showcases the potential of reverse-offset printing for fabricating advanced electronic devices on flexible substrates, creating new possibilities in the field of wearable technology.
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