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Stretchable Textile Electronics with Printing (STEP)

Stretchable Textile Electronics with Printing (STEP)
带印刷功能的可拉伸纺织电子产品 (STEP)
批准号:
104961
负责人:
金额:
$3.68万
依托单位:
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --

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中文摘要
翻译
电子纺织品已经在电影中出现了几十年,从马蒂·麦克弗莱在《回到未来》(1989)中的自干夹克到最近的《头号玩家》(2018)中的可穿戴触觉套装。很多这样的设备都是科幻小说而不是科学事实的原因是,当把电子设备转移到纺织品上时,还有许多工程问题需要解决。纺织品二维旨在通过创新目前用于制造电子纺织品的材料和技术来解决这些问题。为了制造电子纺织品,将配制电子墨水,然后使用喷墨印刷或卷对卷印刷等可扩展的印刷技术将其印刷到纺织品表面。我们将用于制造电子墨水的材料被称为石墨烯,这是一种单原子厚度的碳原子蜂窝状排列。与传统金属相比,石墨烯的优势在于它更具可持续性、更轻、更灵活,而且成本可能要低得多。然而,在纺织品上建造电子设备的另一个关键参数是电子元件与纺织纤维的拉伸性。纺织二维将与国家物理实验室合作,以提高电子墨水的延展性。国家物理实验室将帮助制定新的可穿戴设备拉伸性国家测量标准,同时通过实验测量和分析,帮助解决与纺织品电子元件断裂相关的关键问题。
英文摘要
Electronic textiles (e-textiles) has been seen in movies for decades, from Marty McFly's self-drying jacket in Back to the Future (1989) to the more recent wearable haptic suits in Ready Player One (2018). The reason many of these devices are science fiction and not science fact is that there are still many engineering issues which need to be solved when moving electronics onto textile. Textile Two Dimensional aims to solve these issues through innovating the materials and technology which is currently used to build electronic textiles. To make the e-textile, electronic inks will be formulated and then printed onto textile surfaces using scalable printing techniques such as inkjet printing or roll-to-roll printing. The material we will use to make the electronic ink is known as graphene, a honeycomb arrangement of carbon atoms which is a single atom thick. The advance of using graphene over traditional metals is that it that it is more sustainable, lighter, flexible and potentially much lower cost. However another key parameter of building electronics on textile is the strechability of the electrical components with the textile fibres. Textile Two Dimensional will partner with the National Physical Laboratory to improve the strechability of electronic inks. The National Physical Laboratory will help to develop new national measurement standards for the strechability of wearable devices while also helping to solve key issues related to the fracturing of electronic components on textile through experimental measurement and analysis.
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