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高度灵敏的电子纺织品应变传感器通过几何处理增强,用于人体监测。

Highly Sensitive E-Textile Strain Sensors Enhanced by Geometrical Treatment for Human Monitoring.

机构信息

Department of Organic Materials and Fiber Engineering, Soongsil University, Seoul 156-743, Korea.

出版信息

Sensors (Basel). 2020 Apr 22;20(8):2383. doi: 10.3390/s20082383.

Abstract

Electronic textiles, also known as smart textiles or smart fabrics, are one of the best form factors that enable electronics to be embedded in them, presenting physical flexibility and sizes that cannot be achieved with other existing electronic manufacturing techniques. As part of smart textiles, e-sensors for human movement monitoring have attracted tremendous interest from researchers in recent years. Although there have been outstanding developments, smart e-textile sensors still present significant challenges in sensitivity, accuracy, durability, and manufacturing efficiency. This study proposes a two-step approach (from structure layers and shape) to actively enhance the performance of e-textile strain sensors and improve manufacturing ability for the industry. Indeed, the fabricated strain sensors based on the silver paste/single-walled carbon nanotube (SWCNT) layers and buffer cutting lines have fast response time, low hysteresis, and are six times more sensitive than SWCNT sensors alone. The e-textile sensors are integrated on a glove for monitoring the angle of finger motions. Interestingly, by attaching the sensor to the skin of the neck, the pharynx motions when speaking, coughing, and swallowing exhibited obvious and consistent signals. This research highlights the effect of the shapes and structures of e-textile strain sensors in the operation of a wearable e-textile system. This work also is intended as a starting point that will shape the standardization of strain fabric sensors in different applications.

摘要

电子纺织品,也被称为智能纺织品或智能织物,是使电子产品嵌入其中的最佳形式因素之一,它具有物理灵活性和尺寸,这是其他现有电子制造技术无法实现的。作为智能纺织品的一部分,用于人体运动监测的电子传感器近年来引起了研究人员的极大兴趣。尽管已经取得了杰出的发展,但智能电子纺织品传感器在灵敏度、准确性、耐用性和制造效率方面仍然存在重大挑战。本研究提出了一种两步法(从结构层和形状)来主动提高电子纺织品应变传感器的性能,并提高工业制造能力。事实上,基于银浆/单壁碳纳米管(SWCNT)层和缓冲切割线的应变传感器具有快速的响应时间、低滞后性,并且比单独的 SWCNT 传感器敏感六倍。电子纺织品传感器集成在手套上,用于监测手指运动的角度。有趣的是,通过将传感器贴在颈部皮肤,当说话、咳嗽和吞咽时,喉咙运动显示出明显和一致的信号。这项研究强调了电子纺织品应变传感器的形状和结构在可穿戴电子纺织品系统运行中的作用。这项工作也旨在作为一个起点,为不同应用中应变织物传感器的标准化奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a30/7219329/00451d758efe/sensors-20-02383-g001.jpg

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