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利用褶皱辅助裂纹结构实现人体运动跟踪的高灵敏可拉伸纱线应变传感器。

A Highly Sensitive and Stretchable Yarn Strain Sensor for Human Motion Tracking Utilizing a Wrinkle-Assisted Crack Structure.

机构信息

School of Materials Science and Engineering, Key Laboratory of Materials Processing and Mold, Ministry of Education; Henan Key Laboratory of Advanced Nylon Materials and Application; National Engineering Research Center for Advanced Polymer Processing Technology , Zhengzhou University , Zhengzhou 450001 , China.

Henan Building Materials Research and Design Institute Co., Ltd , Zhengzhou 450001 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Oct 2;11(39):36052-36062. doi: 10.1021/acsami.9b09229. Epub 2019 Sep 19.

Abstract

With the booming development of flexible electronics, the need for a multifunctional and high-performance strain sensor has become increasingly important. Although significant progress has been made in designing new microstructures with sensing capabilities, the tradeoff between sensitivity and workable strain range has prevented the development of a strain sensor that is both highly sensitive and also stretchable. Here, a wrinkle-assisted crack microstructure is designed and fabricated via prestretching the multiwalled carbon nanotubes ink (CNTs ink)/polyurethane yarn (PU yarn). This designed structure originates from the mismatch in Young's modulus and elasticity between the CNTs ink and PU yarn during the stretching process. The structure endows the sensor with combined characteristics of a high sensitivity toward stretching strain (gauge factor of 1344.1 at 200% strain), an ultralow limit of detection (<0.1% strain), excellent durability (>10 000 cycles), a wide workable strain range (0-200%), and outstanding response and stability toward bending deformation. This high-performance strain sensor will see widespread improved performance across applications such as intelligent fabrics, electrical skins, and fatigue detection for full-range human motion monitoring.

摘要

随着柔性电子的蓬勃发展,对多功能、高性能应变传感器的需求变得越来越重要。尽管在设计具有传感能力的新微结构方面取得了重大进展,但灵敏度和可工作应变范围之间的权衡限制了高灵敏度和可拉伸应变传感器的发展。在这里,通过预拉伸多壁碳纳米管油墨(CNTs 油墨)/聚氨酯纱线(PU 纱线),设计并制造了一种褶皱辅助裂纹微结构。这种设计的结构源于在拉伸过程中 CNTs 油墨和 PU 纱线之间的杨氏模量和弹性不匹配。该结构赋予传感器拉伸应变的高灵敏度(应变为 200%时的灵敏度系数为 1344.1)、超低检测限(<0.1%应变)、出色的耐用性(>10000 次循环)、宽可工作应变范围(0-200%)以及对弯曲变形的出色响应和稳定性等综合特性。这种高性能应变传感器将在智能织物、电子皮肤以及全范围人体运动监测的疲劳检测等应用中得到广泛应用,性能得到显著提高。

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