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A Graphene-Based Flexible Pressure Sensor with Applications to Plantar Pressure Measurement and Gait Analysis

机译:基于石墨烯的柔性压力传感器在足底压力测量和步态分析中的应用

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摘要

In the present study, we propose and develop a flexible pressure sensor based on the piezoresistive effect of multilayer graphene films on polyester textile. The pressure response results from the deformation of graphene conductive network structure and the changes in resistance. Here, we show that the graphene pressure sensor can achieve a sensitivity value of 0.012 kPa−1, the measurement range can be as high as 800 kPa, and the response time can reach to 50 ms. Subsequently, a stable in-shoe wireless plantar pressure measurement system is developed and dynamic pressure distribution is acquired in real-time. Overall, the graphene textile pressure sensor has the advantage of wide dynamic range, flexibility and comfort, which provides the high possibility for footwear evaluation, clinical gait analysis and pathological foot diagnosis.
机译:在本研究中,我们基于多层石墨烯薄膜在聚酯织物上的压阻效应,提出并开发了一种柔性压力传感器。压力响应是由石墨烯导电网络结构的变形和电阻的变化引起的。在这里,我们表明石墨烯压力传感器可以达到0.012 kPa -1 的灵敏度值,测量范围可以高达800 kPa,响应时间可以达到50 ms。随后,开发出稳定的鞋内无线足底压力测量系统,并实时获取动态压力分布。总体而言,石墨烯纺织压力传感器具有动态范围宽,灵活性和舒适性的优点,这为鞋类评估,临床步态分析和病理性足部诊断提供了很高的可能性。

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