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大面积、无串扰、由网格层像素化的柔性触觉传感器矩阵。

Large-Area, Crosstalk-Free, Flexible Tactile Sensor Matrix Pixelated by Mesh Layers.

机构信息

School of Mechanical Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea.

Department of Mechanical System Design Engineering, Seoul National University of Science and Technology, 232 Gongneung-ro, Nowon-gu, Seoul 01811, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2021 Mar 17;13(10):12259-12267. doi: 10.1021/acsami.0c21671. Epub 2021 Mar 8.

Abstract

Tactile sensor arrays have attracted considerable attention for their use in diverse applications, such as advanced robotics and interactive human-machine interfaces. However, conventional tactile sensor arrays suffer from electrical crosstalk caused by current leakages between the tactile cells. The approaches that have been proposed thus far to overcome this issue require complex rectifier circuits or a serial fabrication process. This article reports a flexible tactile sensor array fabricated through a batch process using a mesh. A carbon nanotube-polydimethylsiloxane composite is used to form an array of sensing cells in the mesh through a simple "dip-coating" process and is cured into a concave shape. The contact area between the electrode and the composite changes significantly under pressure, resulting in an excellent sensitivity (5.61 kPa) over a wide range of pressure up to 600 kPa. The mesh separates the composite into the arranged sensing cells to prevent the electrical connection between adjacent cells and simultaneously connects each cell mechanically. Additionally, the sensor shows superior durability compared with previously reported tactile sensors because the mesh acts as a support beam. Furthermore, the tactile sensor array is successfully utilized as a Braille reader via information processing based on machine learning.

摘要

触觉传感器阵列因其在各种应用中的应用而受到广泛关注,例如先进的机器人技术和人机交互界面。然而,传统的触觉传感器阵列受到由于触觉单元之间的电流泄漏引起的电串扰。迄今为止,为克服这一问题而提出的方法需要复杂的整流电路或串行制造工艺。本文报道了一种通过使用网格的批处理工艺制造的柔性触觉传感器阵列。通过简单的“浸涂”工艺,将碳纳米管-聚二甲基硅氧烷复合材料形成网格中的传感单元阵列,并固化成凹形。在压力下,电极和复合材料之间的接触面积发生显著变化,在高达 600 kPa 的宽压力范围内具有出色的灵敏度(5.61 kPa)。网格将复合材料分隔成排列好的传感单元,以防止相邻单元之间的电连接,并同时机械连接每个单元。此外,与之前报道的触觉传感器相比,传感器具有出色的耐用性,因为网格充当支撑梁。此外,触觉传感器阵列通过基于机器学习的信息处理成功用作盲文阅读器。

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