Zhang Xuefeng, Chai Running, Wang Haitao, Ye Xiangdong
Shaanxi Key Laboratory of Nano Materials and Technology, Xi'an University of Architecture and Technology, Xi'an 710055, Shaanxi, China.
School of Mechanical and Electrical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, Shaanxi, China.
Micromachines (Basel). 2018 Sep 13;9(9):466. doi: 10.3390/mi9090466.
This paper presents a flexible plantar pressure sensor with a simple structure and easy accessibility, suitable for everyday use. In this study, the design, fabrication, and characteristics of both the composite and the sensor were involved. By using the solution method, the piezoresistive composite was fabricated by uniform dispersion of multiwall carbon nanotubes (MWCNTs) into the polydimethylsiloxane (PDMS) matrix. The proposed sensor consists of eight sensing elements with a laminated structure. The upper layer is a sensing layer made of the piezoresistive composite, and the lower layer is a flexible printed circuit-board working as electrodes. A particular design of sensing elements was carried out by using different doping concentrations according to arrangement positions under the feet to obtain balancing sensitivity. A signal processing system to convert the variable resistance signal into voltages by the current-to-voltage method was designed. Experimental results prove that the designed sensor shows a repeatable response with a sensitivity of 11.5 mV/kPa within the range of 265 kPa. Also, an actual application verifies that the designed plantar pressure sensor can measure the pressure under the foot and can be used for gait detection and disease diagnosis purposes.
本文介绍了一种结构简单、易于使用的柔性足底压力传感器,适用于日常使用。本研究涉及复合材料和传感器的设计、制造及特性。通过溶液法,将多壁碳纳米管(MWCNTs)均匀分散到聚二甲基硅氧烷(PDMS)基体中制备了压阻复合材料。所提出的传感器由八个具有层压结构的传感元件组成。上层是由压阻复合材料制成的传感层,下层是用作电极的柔性印刷电路板。根据脚底不同位置的排列,采用不同的掺杂浓度对传感元件进行了特殊设计,以获得平衡的灵敏度。设计了一种信号处理系统,通过电流-电压法将可变电阻信号转换为电压。实验结果表明,所设计的传感器在265 kPa范围内具有可重复的响应,灵敏度为11.5 mV/kPa。此外,实际应用验证了所设计的足底压力传感器能够测量脚底压力,可用于步态检测和疾病诊断。