Digital Manufacturing and Design Centre, Singapore University of Technology and Design (SUTD), 8 Somapah Road, Singapore, 487372, Singapore.
Robotics Innovation Lab, Singapore University of Technology and Design (SUTD), 8 Somapah Road, Singapore, 487372, Singapore.
Adv Healthc Mater. 2023 Aug;12(21):e2202987. doi: 10.1002/adhm.202202987. Epub 2023 May 21.
E-textiles have recently gained significant traction in the development of soft wearables for healthcare applications. However, there have been limited works on wearable e-textiles with embedded stretchable circuits. Here, stretchable conductive knits with tuneable macroscopic electrical and mechanical properties are developed by varying the yarn combination and the arrangement of stitch types at the meso-scale. Highly extensible piezoresistive strain sensors are designed (>120% strain) with high sensitivity (gauge factor 8.47) and durability (>100,000 cycles), interconnects (>140% strain) and resistors (>250% strain), optimally arranged to form a highly stretchable sensing circuit. The wearable is knitted with a computer numerical control (CNC) knitting machine that offers a cost effective and scalable fabrication method with minimal post-processing. The real-time data from the wearable is transmitted wirelessly using a custom designed circuit board. In this work, an all knitted and fully integrated soft wearable is demonstrated for wireless and continuous real-time sensing of knee joint motion of multiple subjects performing various activities of daily living.
电子纺织品最近在开发用于医疗保健应用的软性可穿戴设备方面引起了广泛关注。然而,在具有嵌入式可拉伸电路的可穿戴电子纺织品方面,相关研究还很有限。在这里,通过在介观尺度上改变纱线组合和针型排列,开发出具有可调宏观电性能和机械性能的可拉伸导电针织品。设计了具有高拉伸性的压阻应变传感器(应变超过 120%),其灵敏度(应变系数为 8.47)和耐用性(超过 100,000 次循环)都很高,还有互连(应变超过 140%)和电阻器(应变超过 250%),这些组件经过优化后可形成一个高度可拉伸的传感电路。该可穿戴设备是使用计算机数控(CNC)针织机编织而成的,这种方法提供了一种具有成本效益且可扩展的制造方法,并且几乎不需要进行后期处理。可穿戴设备的实时数据使用定制设计的电路板以无线方式传输。在这项工作中,展示了一种全针织和完全集成的软性可穿戴设备,可用于对多个对象在执行各种日常活动时的膝关节运动进行无线和连续实时感应。