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首页> 外文期刊>ACS applied materials & interfaces >3D Printing of Highly Sensitive and Large-Measurement-Range Flexible Pressure Sensors with a Positive Piezoresistive Effect
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3D Printing of Highly Sensitive and Large-Measurement-Range Flexible Pressure Sensors with a Positive Piezoresistive Effect

机译:3D印刷高度敏感和大型测量范围的柔性压力传感器,具有阳性压阻效果

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摘要

Piezoresistive composite-based flexible pressure sensors often suffer from a trade-off between the sensitivity and measurement range. Moreover, the sensitivity or measurement range is theoretically limited owing to the negative piezoresistive coefficient, resulting in resistance variation below 100%. Here, flexible pressure sensors were fabricated using the three-dimensional (3D) printing technique to improve both the sensitivity and sensing range through the positive piezoresistive effect. With the addition of carbon nanotubes (CNTs) and fumed silica nanoparticles (SiNPs) as a conductive filler and rheology modifier, respectively, the viscoelastic silicone rubber solution converted to a printable gel ink. Soft and porous composites (SPCs) were then directly printed in air at room temperature. The sensitivity and sensing range of the SPC-based pressure sensor can be simultaneously tuned by adjusting the conducting CNT and insulating SiNP contents. By optimizing the density of the CNT conductive network in the matrix, positive piezoresistive sensitivity (+0.096 kPa(-1)) and a large linear sensing range (0-175 kPa) were obtained. To demonstrate potential applications, the completely soft SPC-based sensor was successfully used in grasp sensing and gait monitoring systems. The 3D printed sensors were also assembled as a smart artificial sensory array to map the pressure distribution.
机译:压阻式复合材料的柔性压力传感器经常遭受灵敏度和测量范围之间的折衷。此外,由于负压阻系数,灵敏度或测量范围是理论上的限制,导致电阻变化低于100%。这里,使用三维(3D)印刷技术制造柔性压力传感器,以通过阳性压阻效果改善灵敏度和感测范围。随着碳纳米管(CNT)和气相二氧化硅纳米颗粒(SINPS)作为导电填料和流变改性剂,粘弹性硅橡胶溶液转化为可印刷凝胶油墨。然后在室温下直接在空气中直接印刷柔软和多孔复合材料。通过调节导电CNT和绝缘SINP内容,可以同时调谐SPC基压力传感器的灵敏度和感测范围。通过优化基质中CNT导电网络的密度,获得阳性压阻灵敏度(+0.096kPa(-1))和大线性传感范围(0-175kPa)。为了展示潜在的应用,以掌握传感和步态监测系统成功地使用完全软的SPC传感器。 3D印刷传感器还被组装为智能人造感觉阵列,以映射压力分布。

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