Flexible piezoelectric tactile sensor with structural electrodes array for shape recognition system

C. Chuang, Wen-Bin Dong, Wen-Bin Lo
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引用次数: 19

Abstract

This study provides an efficient and feasible solution to enhance the sensitivity of traditional piezoelectric tactile sensor based on introducing structural electrode upon the sensing material. A sandwich structure for flexible tactile sensor consists of top and bottom soft substrates made of Polystyrene, and in between of two soft substrates a piezoelectric thin film, PVDF, and a PDMS microstructures array are utilized as sensing material and microstructures, respectively. The experimental results showed the output voltage was linear with contact force from 10N to 0.5 N and good reliability within low frequency range 1 ~ 100 Hz. In addition, the shape recognition also can be achieved as the objective contacted with the 4 by 4 electrodes array. The effects of structural electrode on the enhancement of sensitivity were also numerically simulated by finite element method (FEM) and verified experimentally by dynamic measurement system, respectively. In general, the flexible tactile sensor developed in this study is not only applied for detecting contact force but also for the human physiology monitoring system, such as pulsation, heart rate and blood pressure, etc.
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结构电极阵列柔性压电触觉传感器用于形状识别系统
本研究在传感材料上引入结构电极,为提高传统压电触觉传感器的灵敏度提供了一种有效可行的解决方案。柔性触觉传感器的夹层结构由上下两层聚苯乙烯软基组成,在两层软基之间分别采用压电薄膜PVDF和PDMS微结构阵列作为传感材料和微结构。实验结果表明,输出电压在10N ~ 0.5 N范围内与接触力呈线性关系,在1 ~ 100 Hz低频范围内具有良好的可靠性。此外,作为与4 × 4电极阵列接触的物镜,也可以实现形状识别。采用有限元方法对结构电极对灵敏度提高的影响进行了数值模拟,并通过动态测量系统进行了实验验证。总的来说,本研究开发的柔性触觉传感器不仅可以用于检测接触力,还可以用于人体生理监测系统,如脉搏、心率、血压等。
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