触觉技术
软件可移植性
计算机科学
可穿戴计算机
摩擦电效应
有线手套
接口(物质)
人机交互
虚拟现实
模拟
嵌入式系统
材料科学
气泡
最大气泡压力法
复合材料
并行计算
程序设计语言
作者
Guoqiang Xu,Haoyu Wang,Guangyao Zhao,Jingjing Fu,Kuanming Yao,Shengxin Jia,Rui Shi,Xingcan Huang,Pengcheng Wu,Jiyu Li,Binbin Zhang,Chun Ki Yiu,Zhihao Zhou,Chaojie Chen,Xinyuan Li,Zhengchun Peng,Yunlong Zi,Zijian Zheng,Xinge Yu
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-03-21
卷期号:11 (12)
标识
DOI:10.1126/sciadv.adt0318
摘要
Human-machine interface (HMI) plays an important role in various fields, where haptic technologies provide crucial tactile feedback that greatly enhances user experience, especially in virtual reality/augmented reality, prosthetic control, and therapeutic applications. Through tactile feedback, users can interact with devices in a more realistic way, thereby improving the overall effectiveness of the experience. However, existing haptic devices are often bulky due to cumbersome instruments and power modules, limiting comfort and portability. Here, we introduce a concept of wearable haptic technology: a thin, soft, self-powered electrotactile textile haptic (SPETH) glove that uses the triboelectric effect and gas breakdown discharge for localized electrical stimulation. Daily hand movements generate sufficient mechanical energy to power the SPETH glove. Its features—softness, lightweight, self-sustainability, portability, and affordability—enable it to provide tactile feedback anytime and anywhere without external equipment. This makes the SPETH glove an enhanced, battery-free HMI suitable for a wide range of applications.
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