材料科学
同轴
纳米纤维
静电纺丝
压力传感器
复合材料
同轴电缆
纳米技术
聚合物
机械工程
导线
工程类
作者
Si Hui Pan,Jingqiang He,Weijie Wang,Jiatong Yan,Shan Jiang,Chuanxi Lin,Hong Tang,Ronghui Guo
摘要
The rapid advancement of technology has driven the development of smart wearable devices, and yarn-based pressure sensors, which can improve the accuracy of multi-point pressure recognition, have received great attention. However, the fabrication of high-sensitivity yarn arrays remains a challenge. In this study, coaxial nanofiber-coated yarns through TPU electrospinning and MXene@CNT loading are presented and fabricated to operate in a crossed-node mode, offering excellent sensing performance. The sensor exhibits a sensing range of 0-49.09 N, a maximum sensitivity of 45.50 N-1, and a response time of 35 ms, and maintains stable performance over 5000 cycles as well as at elevated temperatures (45 °C). In addition, the single PDMS-MCTPU/AY yarn also exhibits pressure-sensing properties. The 4 × 4 PDMS-MCTPU/AY pressure-sensing array effectively identifies both the position and magnitude of pressure, which highlights the potential of the PDMS-MCTPU/AY coaxial nanofiber-coated yarns in the field of movement detection and health management.
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