Zhong Weibing, Wang Daiqing, Ke Yiming, Ming Xiaojuan, Jiang Haiqing, Li Jiale, Li Mufang, Chen Qianqian, Wang Dong
Key Laboratory of Textile Fiber and Products, Ministry of Education, Wuhan Textile University, Wuhan 430200, China.
College of Chemistry and Chemical Engineering, Donghua University, Shanghai 201620, China.
Polymers (Basel). 2024 Apr 9;16(8):1023. doi: 10.3390/polym16081023.
The entanglement of fibers can form physical and topological structures, with the resulting bending and stretching strains causing localized changes in pressure. In this study, a multi-layer polyurethane-fiber-prepared (MPF) sensor was developed by coating the CNT/PU sensing layer on the outside of an elastic electrode through a wet-film method. The entangled topology of two MPFs was utilized to convert the stretching strain into localized pressure at the contact area, enabling the perception of stretching strain. The influence of coating mechanical properties and surface structure on strain sensing performance was investigated. A force regulator was introduced to regulate the mechanical properties of the entangled topology of MPF. By modifying the thickness and length proportion of the force regulator, the sensitivity factor and sensitivity range of the sensor could be controlled, achieving a high sensitivity factor of up to 127.74 and a sensitivity range of up to 58%. Eight sensors were integrated into a sensor array and integrated into a dance costume, successfully monitoring the multi-axis motion of the dancer's lumbar spine. This provides a new approach for wearable biomechanical sensors.
纤维的缠结可形成物理和拓扑结构,由此产生的弯曲和拉伸应变会导致压力的局部变化。在本研究中,通过湿膜法在弹性电极外部涂覆碳纳米管/聚氨酯传感层,开发了一种多层聚氨酯纤维制备(MPF)传感器。利用两个MPF的缠结拓扑结构将拉伸应变转化为接触区域的局部压力,从而实现对拉伸应变的感知。研究了涂层机械性能和表面结构对应变传感性能的影响。引入了一个力调节器来调节MPF缠结拓扑结构的机械性能。通过改变力调节器的厚度和长度比例,可以控制传感器的灵敏度因子和灵敏度范围,实现高达127.74的高灵敏度因子和高达58%的灵敏度范围。八个传感器集成到一个传感器阵列中,并集成到一件舞蹈服装中,成功监测了舞者腰椎的多轴运动。这为可穿戴生物力学传感器提供了一种新方法。