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首页> 外文期刊>Sensors Journal, IEEE >Flexible Capacitive Tactile Sensors Based on Carbon Nanotube Thin Films
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Flexible Capacitive Tactile Sensors Based on Carbon Nanotube Thin Films

机译:基于碳纳米管薄膜的柔性电容式触觉传感器

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摘要

Carbon nanotubes (CNTs) are an interesting material for mechanically flexible electronic devices. The possibility to fabricate CNT thin films from solution by scalable coating and printing techniques has paved the way for large-area and low-cost sensor applications. In this paper, we demonstrate mechanically flexible capacitive tactile sensors utilizing spray deposited CNT thin-films and microstructured PDMS spacers. The capacitance is monitored during sensor operation and forces smaller than 10 mN could be detected and changes of up to 20% are achieved for 1 N of applied force. Sensor response can be tailored through an appropriate design of the dielectric spacer. The long-term operational stability of the proposed sensors is demonstrated. Further, a theoretical model is proposed and fitted to experimental data, providing a powerful tool to facilitate the design process.
机译:碳纳米管(CNT)是用于机械柔性电子设备的有趣材料。通过可扩展的涂层和印刷技术从溶液中制造CNT薄膜的可能性为大面积和低成本传感器应用铺平了道路。在本文中,我们演示了利用喷射沉积的CNT薄膜和微结构化PDMS垫片的机械柔性电容式触觉传感器。在传感器工作期间对电容进行监控,可以检测到小于10 mN的力,并且在施加1 N的力时可实现高达20%的变化。可以通过适当设计介电垫片来调整传感器响应。证明了所提出传感器的长期运行稳定性。此外,提出了理论模型并将其拟合到实验数据,为简化设计过程提供了强大的工具。

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