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用于人工触觉系统的增强自供电压力传感器灵敏度的结构解决方案。

Structural Solution to Enhance the Sensitivity of a Self-Powered Pressure Sensor for an Artificial Tactile System.

作者信息

Sim Minkyung, Lee Kyung Hwa, Jeong Yeri, Shin Jeong Hee, Sohn Jung Inn, Cha Seung Nam, Jang Jae Eun

出版信息

IEEE Trans Nanobioscience. 2016 Dec;15(8):804-811. doi: 10.1109/TNB.2016.2621747. Epub 2016 Oct 27.

Abstract

Structural design factors of sensor units have been studied in order to enhance the sensitivity of pressure sensors based on utilizing a piezoelectric material for an artificial tactile sensor. In this study, we have primarily demonstrated the effect of a square pattern array design in a pressure sensor using ZnO nanowires. Nanowires grown on the edge of cells can be bent easily because of growth direction, density control, and buckling effect. Since smaller square pattern arrays induce a higher circumference to cell area ratio, if one sensor unit consists of many micro-level square pattern arrays, the design enhances the piezoelectric efficiency and the sensitivity. As a result, 20 μ m×20 μ m cell arrays showed three times higher pressure sensitivity than 250 μ m×250 μ m cell array structures at a pressure range from 4 kPa to 14 kPa. The induced piezoelectric voltage with the same pressure level also increased drastically. Therefore, the square pattern array design is more appropriate for a high-sensitive pressure sensor than a simple one-body cell design for tactile systems, and it has the advantage of better power efficiency, which is also important for artificial tactile systems. This suggested cell array design can be applied to various systems using piezoelectric nanowires.

摘要

为了提高基于将压电材料用于人工触觉传感器的压力传感器的灵敏度,人们对传感器单元的结构设计因素进行了研究。在本研究中,我们主要展示了在使用氧化锌纳米线的压力传感器中方形图案阵列设计的效果。由于生长方向、密度控制和屈曲效应,生长在单元边缘的纳米线很容易弯曲。由于较小的方形图案阵列会导致周长与单元面积的比率更高,因此,如果一个传感器单元由许多微级方形图案阵列组成,这种设计会提高压电效率和灵敏度。结果,在4千帕至14千帕的压力范围内,20微米×20微米的单元阵列的压力灵敏度比250微米×250微米的单元阵列结构高出三倍。在相同压力水平下感应的压电电压也急剧增加。因此,对于触觉系统的高灵敏度压力传感器而言,方形图案阵列设计比简单的一体式单元设计更合适,并且它具有更好的功率效率优势,这对人工触觉系统也很重要。这种建议的单元阵列设计可应用于使用压电纳米线的各种系统。

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