A Novel Technique To Realize a Flexible Tactile Sensor

Vikram Maharshi, A. Agarwal, Bhaskar Mitra
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Abstract

A cost-effective, flexible tactile sensor with a PDMS (polydimethylsiloxane) layer with a nanostructure pattern serving as the dielectric layer has been demonstrated. The creation of the PDMS layer with a nanostructure design uses an anodized porous alumina (APA) layer as a mold. The APA is created by electrochemically etching the aluminum material in oxalic acid. Due to the great elasticity and deformability of the nanostructures on the PDMS layer, the created tactile sensor device demonstrated remarkable sensitivity. For a pressure of 0.1 kPa, the tactile sensing device was shown to have a sensitivity of 1.1 kPa-1. The sensor can find applications in tactile sensing in low-pressure ranges (0-0.3kPa), where soft touch is desirable for non-destructive sensing.
一种实现柔性触觉传感器的新技术
一种具有成本效益的柔性触觉传感器,其PDMS(聚二甲基硅氧烷)层具有纳米结构模式作为介电层。采用纳米结构设计的PDMS层的创建使用阳极氧化多孔氧化铝(APA)层作为模具。APA是通过在草酸中电化学蚀刻铝材料而产生的。由于PDMS层上的纳米结构具有很大的弹性和可变形性,因此所制备的触觉传感器装置具有很高的灵敏度。对于0.1 kPa的压力,触觉传感装置的灵敏度为1.1 kPa-1。该传感器可以在低压范围(0-0.3kPa)的触觉传感中找到应用,其中软触是无损传感所需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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