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Pressure Sensitivity Enhancement of Porous Carbon Electrode and Its Application in Self-Powered Mechanical Sensors

机译:多孔碳电极的压敏灵敏度增强及其在自动机械传感器中的应用

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摘要

Microsystems with limited power supplies, such as electronic skin and smart fuzes, have a strong demand for self-powered pressure and impact sensors. In recent years, new self-powered mechanical sensors based on the piezoresistive characteristics of porous electrodes have been rapidly developed, and have unique advantages compared to conventional piezoelectric sensors. In this paper, in order to optimize the mechanical sensitivity of porous electrodes, a material preparation process that can enhance the piezoresistive characteristics is proposed. A flexible porous electrode with superior piezoresistive characteristics and elasticity was prepared by modifying the microstructure of the porous electrode material and adding an elastic rubber component. Furthermore, based on the porous electrode, a self-powered pressure sensor and an impact sensor were fabricated. Through experimental results, the response signals of the sensors present a voltage peak under such mechanical effects and the sensitive signal has less clutter, making it easy to identify the features of the mechanical effects.
机译:具有有限电源的微系统,例如电子皮肤和智能浮雕,对自动压力和冲击传感器具有很强的需求。近年来,与传统压电传感器相比,基于多孔电极压阻特性的新型自动机械传感器已经迅速开发,具有独特的优点。在本文中,为了优化多孔电极的机械敏感性,提出了能够提高压阻特性的材料制备方法。通过改变多孔电极材料的微结构并添加弹性橡胶组分,制备具有优异压阻性特性和弹性的柔性多孔电极。此外,基于多孔电极,制造自动力传感器和冲击传感器。通过实验结果,传感器的响应信号在这种机械效应下呈现电压峰值,并且敏感信号具有较少的杂波,使得易于识别机械效果的特征。

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