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Highly Sensitive Flexible/Stretchable Smart Insole Pressure Sensor with Multi-walled Carbon Nanotubes and Polydimethylsiloxane Double-layer Composites

机译:高敏感的柔性/可拉伸智能鞋垫压力传感器,具有多壁碳纳米管和聚二甲基硅氧烷双层复合材料

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To realize a pressure sensor capable of detecting human motions and gait disease for a smart insole system, highly flexible/stretchable and electrical sensing materials are required. In addition, the impact parameters of pressure sensors such as high linearity and sensitivity and a wide range of dynamic pressure are needed to accurately detect external pressure stimuli during the operation. Recent researches have demonstrated a low-cost wearable sensing insole by using scalable and deformable conductive materials. However, although the sensors are suitable to wearable insole system due to scalable and deformable properties, there still are the lack of stretchability and sensor’s performances such as high sensitivity, hysteresis, linearity, and fast response time to obtain an accurate and reliable data. Here, a double-layer multi-walled carbon nanotubes/polydimethylsiloxane (MWCNT/PDMS) pressure sensor with a gap gradient is fabricated by stacking two different composites consisting of 6 and 7 wt% compositions of MWCNTs for top and bottom layers, respectively. Due to the stacked double-layer configuration with different concentrations, the pressure sensor shows high linear sensitivity (~700 kPa) and a pressure range of 0-2 MPa, providing extensively potential applications in monitoring human motions. Moreover, the sensor attached to a shoe insole not only can classify user’s motion states for walking, running, and jumping but also exhibited stability for long-term use.
机译:为了实现一种能够检测用于智能鞋垫系统的人类运动和步态疾病的压力传感器,需要高度灵活/可拉伸和电感材料。此外,需要高线性度和灵敏度等压力传感器的冲击参数,并且需要在操作期间精确地检测外部压力刺激。最近的研究通过使用可伸缩和可变形的导电材料,证明了低成本的可穿戴感测鞋垫。然而,尽管由于可扩展和可变形的特性,传感器适用于可穿戴鞋垫系统,但仍然缺乏可拉伸性和传感器的性能,例如高灵敏度,滞后,线性度和快速响应时间,以获得准确可靠的数据。这里,通过分别堆叠由两个不同的复合材料堆叠由顶层和底层组成的2种不同的复合材料来制造具有间隙梯度的双层多壁碳纳米管/聚二甲基硅氧烷(MWCNT / PDMS)压力传感器。由于具有不同浓度的堆叠双层配置,压力传感器显示出高线性敏感性(〜700kPa)和0-2MPa的压力范围,提供了在监测人类运动中的广泛潜在应用。此外,传感器附接到鞋鞋垫的传感器不仅可以对用户的运动状态进行分类,以便走路,运行和跳跃,而且还表现出长期使用的稳定性。

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