电子皮肤
材料科学
制作
软机器人
人造皮肤
数码产品
碳纳米管
触觉传感器
纳米技术
计算机科学
机器人学
电子元件
电子工程
人工智能
电气工程
工程类
机器人
生物医学工程
病理
替代医学
医学
作者
Gil Ben-Yasharand,Assaf Ya’akobovitz
标识
DOI:10.1109/ted.2021.3091659
摘要
We present an electronic skin with proximity sensing capabilities. Through a simple and cheap fabrication process, we integrate carbon nanotube forests, which serve as the sensing element, into soft, flexible, and transparent artificial skin. Numerical simulations demonstrate the operational principle of the electronic skin proximity sensors. Experimental characterization reveals excellent repeatability and performance of the electronic skin proximity sensors, which are unaffected by the applied strain. Mounting the electronic skin on experimenter's finger further demonstrates its high performance, variability, and potential to interface with humans. Thus, the cheap and simple fabrication process of this electronic skin, together with its straightforward operation, high reliability, and excellent performance under large deformations and different working conditions, set the stage for the development of a new generation of high-end flexible sensory electronic skin, which is attractive in a wide range of engineering fields, such as autonomous soft robotics, biomedicine, and the Internet of Things.
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