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Screen Printing Carbon Nanotubes Textiles Antennas for Smart Wearables

机译:丝网印刷碳纳米管纺织品天线用于智能穿戴性

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摘要

Electronic textiles have become a dynamic research field in recent decades, attracting attention to smart wearables to develop and integrate electronic devices onto clothing. Combining traditional screen-printing techniques with novel nanocarbon-based inks offers seamless integration of flexible and conformal antenna patterns onto fabric substrates with a minimum weight penalty and haptic disruption. In this study, two different fabric-based antenna designs called PICA and LOOP were fabricated through a scalable screen-printing process by tuning the conductive ink formulations accompanied by cellulose nanocrystals. The printing process was controlled and monitored by revealing the relationship between the textiles’ nature and conducting nano-ink. The fabric prototypes were tested in dynamic environments mimicking complex real-life situations, such as being in proximity to a human body, and being affected by wrinkling, bending, and fabric care such as washing or ironing. Both computational and experimental on-and-off-body antenna gain results acknowledged the potential of tunable material systems complimenting traditional printing techniques for smart sensing technology as a plausible pathway for future wearables.
机译:近几十年来,电子纺织品已成为一种动态的研究领域,吸引了对智能可穿戴设备的关注,以开发和集成电子设备。将传统的丝网印刷技术与新型纳米碳油墨的墨水结合,提供柔性和保形天线图案的无缝集成,并具有最小重量惩罚和触觉中断。在该研究中,通过调节伴随纤维素纳米晶体的导电油墨制剂,通过可伸缩的丝网印刷过程制造了两个不同的基于织物的天线设计。通过揭示纺织品自然和导电纳米墨水之间的关系来控制和监测印刷过程。在模仿复杂的现实情况的动态环境中测试了织物原型,例如靠近人体,并受皱纹,弯曲和织物护理的影响,例如洗涤或熨烫。计算和实验性的接近体天线增益既可达到可调谐材料系统的潜力,称为智能传感技术的传统印刷技术作为未来可穿戴物的合理途径。

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